165 results on '"Mcnulty, D."'
Search Results
2. The CLAS12 drift chamber system
- Author
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Mestayer, M.D., Adhikari, K., Bennett, R.P., Bueltmann, S., Chetry, T., Christo, S.B., Cook, M., IV, Cuevas, R.C., Dodge, G.E., El Fassi, L., Forest, T.A., Jacobs, G., Hartlove, T., Hayward, T.B., Kabir, L., Kuhn, S.E., McNulty, D., Nanda, S., Newton, J., Taylor, W.M., Weinstein, L.B., and Ziegler, V.
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- 2020
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3. An experimental program with high duty-cycle polarized and unpolarized positron beams at Jefferson Lab
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Accardi, A., Afanasev, A., Albayrak, I., Ali, S. F., Amaryan, M., Annand, J. R. M., Arrington, J., Asaturyan, A., Atac, H., Avakian, H., Averett, T., Gayoso, C. Ayerbe, Bai, X., Barion, L., Battaglieri, M., Bellini, V., Beminiwattha, R., Benmokhtar, F., Berdnikov, V. V., Bernauer, J. C., Bertone, V., Bianconi, A., Biselli, A., Bisio, P., Blunden, P., Boer, M., Bondì, M., Brinkmann, K.-T., Briscoe, W. J., Burkert, V., Cao, T., Camsonne, A., Capobianco, R., Cardman, L., Carmignotto, M., Caudron, M., Causse, L., Celentano, A., Chatagnon, P., Chen, J.-P., Chetry, T., Ciullo, G., Cline, E., Cole, P. L., Contalbrigo, M., Costantini, G., D’Angelo, A., Darmé, L., Day, D., Defurne, M., De Napoli, M., Deur, A., De Vita, R., D’Hose, N., Diehl, S., Diefenthaler, M., Dongwi, B., Dupré, R., Dutrieux, H., Dutta, D., Ehrhart, M., El Fassi, L., Elouadrhiri, L., Ent, R., Erler, J., Fernando, I. P., Filippi, A., Flay, D., Forest, T., Fuchey, E., Fucini, S., Furletova, Y., Gao, H., Gaskell, D., Gasparian, A., Gautam, T., Girod, F.-X., Gnanvo, K., Grames, J., Grauvogel, G. N., Gueye, P., Guidal, M., Habet, S., Hague, T. J., Hamilton, D. J., Hansen, O., Hasell, D., Hattawy, M., Higinbotham, D. W., Hobart, A., Horn, T., Hyde, C. E., Ibrahim, H., Ilyichev, A., Italiano, A., Joo, K., Joosten, S. J., Khachatryan, V., Kalantarians, N., Kalicy, G., Karky, B., Keller, D., Keppel, C., Kerver, M., Khandaker, M., Kim, A., Kim, J., King, P. M., Kinney, E., Klimenko, V., Ko, H.-S., Kohl, M., Kozhuharov, V., Kriesten, B. T., Krnjaic, G., Kubarovsky, V., Kutz, T., Lanza, L., Leali, M., Lenisa, P., Liyanage, N., Liu, Q., Liuti, S., Mammei, J., Mantry, S., Marchand, D., Markowitz, P., Marsicano, L., Mascagna, V., Mazouz, M., McCaughan, M., McKinnon, B., McNulty, D., Melnitchouk, W., Metz, A., Meziani, Z.-E., Migliorati, S., Mihovilovič, M., Milner, R., Mkrtchyan, A., Mkrtchyan, H., Movsisyan, A., Moutarde, H., Muhoza, M., Camacho, C. Muñoz, Murphy, J., Nadel-Turoński, P., Nardi, E., Nazeer, J., Niccolai, S., Niculescu, G., Novotny, R., Owens, J. F., Paolone, M., Pappalardo, L., Paremuzyan, R., Pasquini, B., Pasyuk, E., Patel, T., Pegg, I., Peng, C., Perera, D., Poelker, M., Price, K., Puckett, A. J. R., Raggi, M., Randazzo, N., Rashad, M. N. H., Rathnayake, M., Raue, B., Reimer, P. E., Rinaldi, M., Rizzo, A., Roblin, Y., Roche, J., Rondon-Aramayo, O., Sabatié, F., Salmè, G., Santopinto, E., Santos Estrada, R., Sawatzky, B., Schmidt, A., Schweitzer, P., Scopetta, S., Sergeyeva, V., Shabestari, M., Shahinyan, A., Sharabian, Y., Širca, S., Smith, E. S., Sokhan, D., Somov, A., Sparveris, N., Spata, M., Spiesberger, H., Spreafico, M., Stepanyan, S., Stoler, P., Strakovsky, I., Suleiman, R., Suresh, M., Sznajder, P., Szumila-Vance, H., Tadevosyan, V., Tadepalli, A. S., Thomas, A. W., Tiefenback, M., Trotta, R., Ungaro, M., Valente, P., Vanderhaeghen, M., Venturelli, L., Voskanyan, H., Voutier, E., Wojtsekhowski, B., Wood, M. H., Wood, S., Xie, J., Xiong, W., Ye, Z., Yurov, M., Zaunick, H.-G., Zhamkochyan, S., Zhang, J., Zhang, S., Zhao, S., Zhao, Z. W., Zheng, X., Zhou, J., and Zorn, C.
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- 2021
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4. Study of light backgrounds from relativistic electrons in air light-guides
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Riordan, S., Zhao, Y.X., Baunack, S., Becker, D., Clarke, C., Dehmelt, K., Deshpande, A., Gericke, M., Gläser, B., Imai, K., Kutz, T., Maas, F.E., McNulty, D., Pan, J., Park, S., Rahman, S., Souder, P.A., Wang, P., Wellman, B., and Kumar, K.S.
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- 2018
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5. Sensitivity of heterointerfaces on emission wavelength of quantum cascade lasers
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Wang, C.A., Schwarz, B., Siriani, D.F., Connors, M.K., Missaggia, L.J., Calawa, D.R., McNulty, D., Akey, A., Zheng, M.C., Donnelly, J.P., Mansuripur, T.S., and Capasso, F.
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- 2017
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6. High precision photon flux determination for photon tagging experiments
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Teymurazyan, A., Ahmidouch, A., Ambrozewicz, P., Asratyan, A., Baker, K., Benton, L., Burkert, V., Clinton, E., Cole, P., Collins, P., Dale, D., Danagoulian, S., Davidenko, G., Demirchyan, R., Deur, A., Dolgolenko, A., Dzyubenko, G., Ent, R., Evdokimov, A., Feng, J., Gabrielyan, M., Gan, L., Gasparian, A., Glamazdin, A., Goryachev, V., Hardy, K., He, J., Ito, M., Jiang, L., Kashy, D., Khandaker, M., Kolarkar, A., Konchatnyi, M., Korchin, A., Korsch, W., Kosinov, O., Kowalski, S., Kubantsev, M., Kubarovsky, V., Larin, I., Lawrence, D., Li, X., Martel, P., Matveev, V., McNulty, D., Mecking, B., Milbrath, B., Minehart, R., Miskimen, R., Mochalov, V., Nakagawa, I., Overby, S., Pasyuk, E., Payen, M., Pedroni, R., Prok, Y., Ritchie, B., Salgado, C., Shahinyan, A., Sitnikov, A., Sober, D., Stepanyan, S., Stevens, W., Underwood, J., Vasiliev, A., Vishnyakov, V., Wood, M., and Zhou, S.
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- 2014
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7. New Measurements of the Beam-Normal Single Spin Asymmetry in Elastic Electron Scattering Over a Range of Spin-0 Nuclei
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PREX, Collaborations, CREX, Adhikari, D., Albataineh, H., Androic, D., Aniol, K., Armstrong, D. S., Averett, T., Gayoso, C. Ayerbe, Barcus, S., Bellini, V., Beminiwattha, R. S., Benesch, J. F., Bhatt, H., Pathak, D. Bhatta, Bhetuwal, D., Blaikie, B., Boyd, J., Campagna, Q., Camsonne, A., Cates, G. D., Chen, Y., Clarke, C., Cornejo, J. C., Dusa, S. Covrig, Dalton, M. M., Datta, P., Deshpande, A., Dutta, D., Feldman, C., Fuchey, E., Gal, C., Gaskell, D., Gautam, T., Gericke, M., Ghosh, C., Halilovic, I., Hansen, J. -O., Hauenstein, F., Henry, W., Horowitz, C. J., Jantzi, C., Jian, S., Johnston, S., Jones, D. C., Karki, B., Kakkar, S., Katugampola, S., Keppel, C. E., King, P. M., King, D. E., Knauss, M., Kumar, K. S., Kutz, T., Lashley-Colthirst, N., Leverick, G., Liu, H., Liyange, N., Malace, S., Mammei, J., Mammei, R., McCaughan, M., McNulty, D., Meekins, D., Metts, C., Michaels, R., Mihovilovic, M., Mondal, M. M., Napolitano, J., Nikolaev, D., Rashad, M. N. H., Owen, V., Palatchi, C., Pan, J., Pandey, B., Park, S., Paschke, K. D., Petrusky, M., Pitt, M. L., Premathilake, S., Puckett, A. J. R., Quinn, B., Radloff, R., Rahman, S., Rathnayake, A., Reed, B. T., Reimer, P. E., Richards, R., Riordan, S., Roblin, Y., Seeds, S., Shahinyan, A., Souder, P. A., Tang, L., Thiel, M., Tian, Y., Urciuoli, G. M., Wertz, E. W., Wojtsekhowski, B., Xiong, W., Yale, B., Ye, T., Zec, A., Zhang, W., Zhang, J., and Zheng, X.
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General Physics and Astronomy ,FOS: Physical sciences ,Nuclear Experiment (nucl-ex) ,single spin asymmetry, elastic electron scattering ,Nuclear Experiment - Abstract
We report precision determinations of the beam normal single spin asymmetries ($A_n$) in the elastic scattering of 0.95 and 2.18~GeV electrons off $^{12}$C, $^{40}$Ca, $^{48}$Ca, and $^{208}$Pb at very forward angles where the most detailed theoretical calculations have been performed. The first measurements of $A_n$ for $^{40}$Ca and $^{48}$Ca are found to be similar to that of $^{12}$C, consistent with expectations thus demonstrating the validity of theoretical calculations for nuclei with Z~$\leq20$. We also report $A_n$ for $^{208}$Pb at two new momentum transfers (Q$^2$) extending the previous measurement. Our new data confirm the surprising result previously reported, with all three data points showing significant disagreement with the results from the $Z\leq 20$ nuclei. These data confirm our basic understanding of the underlying dynamics that govern $A_n$ for nuclei containing $\lesssim 50$ nucleons, but point to the need for further investigation to understand the unusual $A_n$ behaviour discovered for scattering off $^{208}$Pb., Comment: 7 pages, 2 figures
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- 2022
8. Nuclear targets for a precision measurement of the neutral pion radiative width
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Martel, P., Clinton, E., McWilliams, R., Lawrence, D., Miskimen, R., Ahmidouch, A., Ambrozewicz, P., Asratyan, A., Baker, K., Benton, L., Bernstein, A., Cole, P., Collins, P., Dale, D., Danagoulian, S., Davidenko, G., Demirchyan, R., Deur, A., Dolgolenko, A., Dzyubenko, G., Evdokimov, A., Feng, J., Gabrielyan, M., Gan, L., Gasparian, A., Glamazdin, O., Goryachev, V., Gyurjyan, V., Hardy, K., Ito, M., Khandaker, M., Kingsberry, P., Kolarkar, A., Konchatnyi, M., Korchin, O., Korsch, W., Kowalski, S., Kubantsev, M., Kubarovsky, V., Larin, I., Matveev, V., McNulty, D., Milbrath, B., Minehart, R., Mochalov, V., Mtingwa, S., Nakagawa, I., Overby, S., Pasyuk, E., Payen, M., Pedroni, R., Prok, Y., Ritchie, B., Salgado, C., Sitnikov, A., Sober, D., Stephens, W., Teymurazyan, A., Underwood, J., Vasiliev, A., Verebryusov, V., Vishnyakov, V., and Wood, M.
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- 2009
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9. Measurement of parity violation in electron–quark scattering
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Wang, D., Pan, K., Subedi, R., Deng, X., Ahmed, Z., Allada, K., Aniol, K. A., Armstrong, D. S., Arrington, J., Bellini, V., Beminiwattha, R., Benesch, J., Benmokhtar, F., Bertozzi, W., Camsonne, A., Canan, M., Cates, G. D., Chen, J.-P., Chudakov, E., Cisbani, E., Dalton, M. M., de Jager, C. W., De Leo, R., Deconinck, W., Deur, A., Dutta, C., El Fassi, L., Erler, J., Flay, D., Franklin, G. B., Friend, M., Frullani, S., Garibaldi, F., Gilad, S., Giusa, A., Glamazdin, A., Golge, S., Grimm, K., Hafidi, K., Hansen, J.-O., Higinbotham, D. W., Holmes, R., Holmstrom, T., Holt, R. J., Huang, J., Hyde, C. E., Jen, C. M., Jones, D., Kang, Hoyoung, King, P. M., Kowalski, S., Kumar, K. S., Lee, J. H., LeRose, J. J., Liyanage, N., Long, E., McNulty, D., Margaziotis, D. J., Meddi, F., Meekins, D. G., Mercado, L., Meziani, Z.-E., Michaels, R., Mihovilovic, M., Muangma, N., Myers, K. E., Nanda, S., Narayan, A., Nelyubin, V., Nuruzzaman, Oh, Y., Parno, D., Paschke, K. D., Phillips, S. K., Qian, X., Qiang, Y., Quinn, B., Rakhman, A., Reimer, P. E., Rider, K., Riordan, S., Roche, J., Rubin, J., Russo, G., Saenboonruang, K., Saha, A., Sawatzky, B., Shahinyan, A., Silwal, R., Sirca, S., Souder, P. A., Suleiman, R., Sulkosky, V., Sutera, C. M., Tobias, W. A., Urciuoli, G. M., Waidyawansa, B., Wojtsekhowski, B., Ye, L., Zhao, B., and Zheng, X.
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- 2014
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10. Mortality related to primary bariatric surgery in England
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Alam, M., Bhanderi, S., Matthews, J. H., McNulty, D., Pagano, D., Small, P., Singhal, R., and Welbourn, R.
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Original Article ,Original Articles - Abstract
Background Bariatric surgery is an accepted treatment option for severe obesity. Previous analysis of the independently collected Hospital Episode Statistics (HES) data for outcomes after bariatric surgery demonstrated a 30‐day postoperative mortality rate of 0·3 per cent in the English National Health Service (NHS). However, there have been no published mortality data for bariatric procedures performed since 2008. This study aimed to assess mortality related to bariatric surgery in England from 2009. Methods HES data were used to identify all patients who had primary bariatric surgery from 2009 to 2016. Clinical codes were used selectively to identify all primary bariatric procedures but exclude revision or conversion procedures and operations for malignant or other benign disease. The primary outcome measures were HES in‐hospital and Office for National Statistics (ONS) 30‐day mortality after discharge. Results A total of 41 241 primary bariatric procedures were carried out in the NHS between 2009 and 2016, with 29 in‐hospital deaths (0·07 per cent). The 30‐day mortality rate after discharge was 0·08 per cent (32 of 41 241). Both the in‐hospital and 30‐day mortality rates after discharge demonstrated a downward trend over the study period. Conclusion Overall in‐hospital and 30‐day mortality rates remain very low after primary bariatric surgery. An increased uptake of bariatric surgery within the English NHS has been safe.
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- 2017
11. High precision measurement of Compton scattering in the 5 GeV region
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Ambrozewicz, P., Ye, L., Prok, Y., Larin, I., Ahmidouch, A., Baker, K., Baturin, V., Benton, L., Bernstein, A., Burkert, V., Clinton, E., Cole, P.L., Collins, P., Dale, D., Danagoulian, S., Davidenko, G., Demirchyan, R., Deur, A., Dolgolenko, A., Dutta, D., Dzyubenko, G., Evdokimov, A., Fedotov, G., Feng, J., Gabrielyan, M., Gan, L., Gao, H., Gasparian, A., Gevorkyan, N., Gevorkyan, S., Glamazdin, A., Goryachev, V., Guo, L., Gyurjyan, V., Hardy, K., He, J., Isupov, E., Ito, M.M., Jiang, L., Kang, H., Kashy, D., Khandaker, M., Kingsberry, P., Klein, F., Kolarkar, A., Konchatnyi, M., Korchin, O., Korsch, W., Kosinov, O., Kowalski, S., Kubantsev, M., Kubarovsky, A., Kubarovsky, V., Lawrence, D., Li, X., Levillain, M., Lu, H., Ma, L., Martel, P., Matveev, V., McNulty, D., Mecking, B., Micherdzinska, A., Milbrath, B., Minehart, R., Miskimen, R., Mochalov, V., Morrison, B., Mtingwa, S., Nakagawa, I., Overby, S., Pasyuk, E., Payen, M., Park, K., Pedroni, R., Phelps, W., Protopopescu, D., Rimal, D., Ritchie, B.G., Romanov, D., Salgado, C., Shahinyan, A., Sitnikov, A., Sober, D., Stepanyan, S., Stephens, W., Tarasov, V., Taylor, S., Teymurazyan, A., Underwood, J., Vasiliev, A., Vishnyakov, V., Weygand, D.P., Wood, M., Zhang, Y., Zhou, S., and Zihlmann, B.
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- 2019
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12. Studies on Maltose Phosphorylase from Lactobacilli
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McNulty, D. W.
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572.7 - Published
- 1976
13. Working class movements in Somerset and Wiltshire, 1837-1848
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McNulty, D.
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942.08 - Published
- 1981
14. Creation of oral care flavours to deliver breath-freshening benefits
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Bradshaw, D J, Perring, K D, Cawkill, P M, Provan, A F, McNulty, D A, Saint, E J, Richards, J, Munroe, M J, and Behan, J M
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- 2005
15. Wear rate and surface morphology of UHMWPE cups are affected by the serum lubricant concentration in a hip simulation test
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Liao, Y.-S., McNulty, D., and Hanes, M.
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- 2003
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16. First measurement of unpolarized semi-inclusive deep-inelastic scattering cross sections from a $^3$He target
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Allada, K., Aniol, K., Annand, J.R.M., Averett, T., Benmokhtar, F., Bertozzi, W., Bradshaw, P.C., Bosted, P., Camsonne, A., Canan, M., Cates, G.D., Chen, C., Chen, J.-P., Chen, W., Chirapatpimol, K., Chudakov, E., Cisbani, E., Cornejo, J.C., Cusanno, F., Dalton, M.M., Deconinck, W., de Jager, C.W., de Leo, R., Deng, X., Deur, A., Ding, H., Dolph, P.A.M., Dutta, C., Dutta, D., El Fassi, L., Frullani, S., Gao, H., Garibaldi, F., Gaskell, D., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Guo, L., Hamilton, D., Hansen, O., Higinbotham, D.W., Holmstrom, T., Huang, J., Huang, M., Ibrahim, H.F., Iodice, M., Jiang, X., Jin, G., Jones, M.K., Katich, J., Kelleher, A., Kim, W., Kolarkar, A., Korsch, W., Lerose, J.J., Li, X., Li, Y., Lindgren, R., Liu, T., Liyanage, N., Long, E., Lu, H.-J., Margaziotis, D.J., Markowitz, P., Marrone, S., Mcnulty, D., Meziani, Z.-E., Michaels, R., Moffit, B., Muñoz Camacho, C., Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Oh, Y., Osipenko, M., Parno, D., Peng, J.-C., Phillips, S.K., Posik, M., Puckett, A.J.R., Qian, X., Qiang, Y., Rakhman, A., Ransome, R., Riordan, S., Saha, A., Sawatzky, B., Schulte, E., Shahinyan, A., Shabestari, M.H., Širca, S., Stepanyan, S., Subedi, R., Sulkosky, V., Tang, L.-G., Tobias, W.A., Urciuoli, G.M., Vilardi, I., Wang, K., Wojtsekhowski, B., Wang, Y., Yan, X., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y.-W., Zhao, B., Zhao, Y.X., Zheng, X., Zhu, L., Zhu, X., Zong, X., Laboratoire de Physique de Clermont ( LPC ), Institut National de Physique Nucléaire et de Physique des Particules du CNRS ( IN2P3 ) -Université Clermont Auvergne ( UCA ) -Centre National de la Recherche Scientifique ( CNRS ), Institut National de Physique Nucléaire et de Physique des Particules du CNRS ( IN2P3 ), Jefferson Lab Hall A, Laboratoire de Physique de Clermont (LPC), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Clermont Auvergne (UCA)-Centre National de la Recherche Scientifique (CNRS), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Université Clermont Auvergne (UCA), and Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Clermont Auvergne [2017-2020] (UCA [2017-2020])-Centre National de la Recherche Scientifique (CNRS)
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+electron+pi%2B%22">electron helium --> electron pi+ ,HRS ,helium: target ,cross section: ratio ,plane wave ,HERMES ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,cross section: angular dependence ,COMPASS ,Sivers function ,quantum chromodynamics ,electron: beam ,[ PHYS.NEXP ] Physics [physics]/Nuclear Experiment [nucl-ex] ,+electron+pi%22">electron helium --> electron pi ,deep inelastic scattering: semi-inclusive reaction ,nucleus ,parametrization ,showers ,model: quark parton ,pi+: production ,kinematics ,differential cross section ,quark: valence ,higher-dimensional ,numerical calculations: Monte Carlo ,experimental results ,Jefferson Lab - Abstract
International audience; The unpolarized semi-inclusive deep-inelastic scattering (SIDIS) differential cross sections in He3(e,e′π±)X have been measured for the first time in Jefferson Lab experiment E06-010 with a 5.9GeVe− beam on a He3 gas target. The experiment focuses on the valence quark region, covering a kinematic range 0.12
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- 2017
17. First measurement of unpolarized SIDIS cross section and cross section ratios from a $^3$He target
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Yan, X., Allada, K., Aniol, K., Annand, J. R. M., Averett, T., Benmokhtar, F., Bertozzi, W., Bradshaw, P. C., Bosted, P., Camsonne, A., Canan, M., Cates, G. D., Chen, C., Chen, J. -P., Chen, W., Chirapatpimol, K., Chudakov, E., Cisbani, E., Cornejo, J. C., Cusanno, F., Dalton, M. M., Deconinck, W., de Jager, C. W., De Leo, R., Deng, X., Deur, A., Ding, H., Dolph, P. A. M., Dutta, C., Dutta, D., Fassi, L. El, Frullani, S., Gao, H., Garibaldi, F., Gaskell, D., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Guo, L., Hamilton, D., Hansen, O., Higinbotham, D. W., Holmstrom, T., Huang, J., Huang, M., Ibrahim, H. F, Iodice, M., Jiang, X., Jin, G., Jones, M. K., Katich, J., Kelleher, A., Kim, W., Kolarkar, A., Korsch, W., LeRose, J. J., Li, X., Li, Y., Lindgren, R., Liu, T., Liyanage, N., Long, E., Lu, H. -J., Margaziotis, D. J., Markowitz, P., Marrone, S., McNulty, D., Meziani, Z. -E., Michaels, R., Moffit, B., Camacho, C. Munoz, Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Oh, Y., Osipenko, M., Parno, D., Peng, J. -C., Phillips, S. K., Posik, M., Puckett, A. J. R., Qian, X., Qiang, Y., Rakhman, A., Ransome, R., Riordan, S., Saha, A., Sawatzky, B., Schulte, E., Shahinyan, A., Shabestari, M. H., Sirca, S., Stepanyan, S., Subedi, R., Sulkosky, V., Tang, L. -G., Tobias, W. A., Urciuoli, G. M., Vilardi, I., Wang, K., Wojtsekhowski, B., Wang, Y., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y., Zhang, Y. -W., Zhao, B., Zhao, Y. X., Zheng, X., Zhu, L., Zhu, X., and Zong, X.
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FOS: Physical sciences ,Nuclear Experiment (nucl-ex) ,Nuclear Experiment - Abstract
The unpolarized semi-inclusive deep-inelastic scattering (SIDIS) differential cross sections in $^3$He($e,e^{\prime}��^{\pm}$)$X$ have been measured for the first time in Jefferson Lab experiment E06-010 performed with a $5.9\,$GeV $e^-$ beam on a $^3$He target. The experiment focuses on the valence quark region, covering a kinematic range $0.12 < x_{bj} < 0.45$, $1 < Q^2 < 4 \, \textrm{(GeV/c)}^2$, $0.45 < z_{h} < 0.65$, and $0.05 < P_t < 0.55 \, \textrm{GeV/c}$. The extracted SIDIS differential cross sections of $��^{\pm}$ production are compared with existing phenomenological models while the $^3$He nucleus approximated as two protons and one neutron in a plane wave picture, in multi-dimensional bins. Within the experimental uncertainties, the azimuthal modulations of the cross sections are found to be consistent with zero.
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- 2016
18. A PILOT AVALANCHE FORECASTING PROJECT FOR THE CRAIGIEBURN RANGE, NEW ZEALAND
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Fitzharris, B. B., McNulty, D., Owens, I. F., and Miller, I. D.
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- 1983
19. Long-Baseline Neutrino Facility (LBNF) and Deep Underground Neutrino Experiment (DUNE) Conceptual Design Report Volume 1: The LBNF and DUNE Projects
- Author
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Acciarri, R., Acero, M. A., Adamowski, M., Adams, C., Adamson, P., Adhikari, S., Ahmad, Z., Albright, C. H., Alion, T., Amador, E., Anderson, J., Anderson, K., Andreopoulos, C., Andrews, M., Andrews, R., Anghel, I., Anjos, J. d., Ankowski, A., Antonello, M., ArandaFernandez, A., Ariga, A., Ariga, T., Aristizabal, D., Arrieta-Diaz, E., Aryal, K., Asaadi, J., Asner, D., Athar, M. S., Auger, M., Aurisano, A., Aushev, V., Autiero, D., Avila, M., Back, J. J., Bai, X., Baibussinov, B., Baird, M., Balantekin, A. B., Baller, B., Ballett, P., Bambah, B., Bansal, M., Bansal, S., Barker, G. J., Barletta, W. A., Barr, G., Barros, N., Bartoszek, L., Bashyal, A., Bass, M., Bay, F., Beacom, J., Behera, B. R., Bellettini, G., Bellini, V., Beltramello, O., Benetti, P. A., Bercellie, A., Bergevin, M., Berman, E., Berns, H., Bernstein, R., Bertolucci, S., Bhandari, B., Bhatnagar, V., Bhuyan, B., Bian, J., Biery, K., Bishai, M., Blackburn, T., Blake, A., Blaszczyk, F. d. M., Blaufuss, E., Bleakley, B., Blucher, E., Bocean, V., Boffelli, F., Boissevain, J., Bolognesi, S., Bolton, T., Bonesini, M., Boone, T., Booth, C., Bordoni, S., Borysova, M., Bourguille, B., Boyd, S. B., Brailsford, D., Brandt, A., Bremer, J., Brice, S., Bromberg, C., Brooijmans, G., Brown, G., Brown, R., Brunetti, G., Bu, X., Buchanan, N., Budd, H., Bugg, B., Calafiura, P., Calligarich, E., Calvo, E., Camilleri, L., Campanelli, M., Cantini, C., Carls, B., Carr, R., Cascella, M., Castromonte, C., CatanoMur, E., Cavanna, F., Centro, S., CerveraVillanueva, A., Chandratre, V. B., Chatterjee, A., Chattopadhyay, S., Chaussard, L., Chembra, S., Chen, H., Chen, K., Chen, M., Cherdack, D., Chi, C., Childress, S., Choubey, S., Choudhary, B. C., Christodoulou, G., Christofferson, C., Church, E., Cianci, D., Cline, D., Coan, T., Cocco, A., Coelho, J., Cole, P., Collin, G., Conrad, J. M., Convery, M., Corey, R., Corwin, L., Cranshaw, J., Crivelli, P., Cronin-Hennessy, D., Curioni, A., Cushing, J., Adams, D. L., Dale, D., Das, S. R., Davenne, T., Davies, G. S., Davies, J., Dawson, J., De, K., deGouvea, A., deJong, J. K., deJong, P., DeLurgio, P., Decowski, M., Delbart, A., Densham, C., Dharmapalan, R., Dhingra, N., DiLuise, S., Diamantopoulou, M., Diaz, J. S., DiazBautista, G., Diwan, M., Djurcic, Z., Dolph, J., Drake, G., Duchesneau, D., Duvernois, M., Duyang, H., Dwyer, D. A., Dye, S., Dytman, S., Eberly, B., Edgecock, R., Edmunds, D., Elliott, S., Elnimr, M., Emery, S., Endress, E., Eno, S., Ereditato, A., Escobar, C. O., Evans, J., Falcone, A., Falk, L., Farbin, A., Farnese, C., Farzan, Y., Fava, A., Favilli, L., Felde, J., Felix, J., Fernandes, S., Fields, L., Finch, A., Fitton, M., Fleming, B., Forest, T., Fowler, J., Fox, W., Fried, J., Friedland, A., Fuess, S., Fujikawa, B., Gago, A., Gallagher, H., Galymov, S., Gamble, T., Gandhi, R., Garcia-Gamez, D., Gardiner, S., Garvey, G., Gehman, V. M., Gendotti, A., Geronimo, G. d., Ghag, C., Ghoshal, P., Gibin, D., Gil-Botella, I., Gill, R., Girardelli, D., Giri, A., Glavin, S., Goeldi, D., Golapinni, S., Gold, M., Gomes, R. A., GomezCadenas, J. J., Goodman, M. C., Gorbunov, D., Goswami, S., Graf, N., Graham, M., Gramelini, E., Gran, R., Grant, C., Grant, N., Greco, V., Greenlee, H., Greenler, L., Greenley, C., Groh, M., Grullon, S., Grundy, T., Grzelak, K., Guardincerri, E., Guarino, V., Guarnaccia, E., Guedes, G. P., Guenette, R., Guglielmi, A., Habig, A. T., Hackenburg, R. W., Hackenburg, A., Hadavand, H., Haenni, R., Hahn, A., Haigh, M. D., Haines, T., Hamernik, T., Handler, T., Hans, S., Harris, D., Hartnell, J., Hasegawa, T., Hatcher, R., Hatzikoutelis, A., Hays, S., Hazen, E., Headley, M., Heavey, A., Heeger, K., Heise, J., Hennessy, K., Hewes, V, Higuera, A., Hill, T., Himmel, A., Hogan, M., Holanda, P., Holin, A., Honey, W., Horikawa, S., Horton-Smith, G., Howard, B., Howell, J., Hurh, P., Huston, J., Hylen, J., Imlay, R., Insler, J., Introzzi, G., Ioanisyan, D., Ioannisian, A., Iwamoto, K., Izmaylov, A., Jackson, C., Jaffe, D. E., James, C., James, E., Jediny, F., Jen, C., Jhingan, A., Jiménez, S., Jo, J. H., Johnson, M., Johnson, R., Johnstone, J., Jones, B. J., Joshi, J., Jostlein, H., Jung, C. K., Junk, T., Kaboth, A., Kadel, R., Kafka, T., Kalousis, L., Kamyshkov, Y., Karagiorgi, G., Karasavvas, D., Karyotakis, Y., Kaur, A., Kaur, P., Kayser, B., Kazaryan, N., Kearns, E., Keener, P., Kemboi, S., Kemp, E., Kettell, S. H., Khabibullin, M., Khandaker, M., Khotjantsev, A., Kirby, B., Kirby, M., Klein, J., Kobilarcik, T., Kohn, S., Koizumi, G., Kopylov, A., Kordosky, M., Kormos, L., Kose, U., Kostelecky, V. A., Kramer, M., Kreslo, I., Kriske, R., Kropp, W., Kudenko, Y., Kudryavtsev, V. A., Kulagin, S., Kumar, A., Kumar, G. K., Kumar, J., Kumar, L., Kutter, T., Laminack, A., Lande, K., Lane, C., Lang, K., Lanni, F., Learned, J., Lebrun, P., Lee, D., Lee, H., Lee, K., Lee, W. M., LeiguideOliveira, M. A., Li, Q., Li, S., Li, X., Li, Y., Li, Z., Libo, J., Lin, C. S., Lin, S., Ling, J., Link, J., Liptak, Z., Lissauer, D., Littenberg, L., Littlejohn, B., Liu, Q., Liu, T., Lockwitz, S., Lockyer, N., Loew, T., Lokajicek, M., Long, K., Lopes, M. D. L., Lopez, J. P., Losecco, J., Louis, W., Lowery, J., Luethi, M., Luk, K. B., Lundberg, B., Lundin, T., Luo, X., Lux, T., Lykken, J., Machado, A. A., Macier, J. R., Magill, S., Mahler, G., Mahn, K., Malek, M., Malhotra, S., Malon, D., Mammoliti, F., Mancina, S., Mandal, S. K., Mandodi, S., Manly, S. L., Mann, A., Marchionni, A., Marciano, W., Mariani, C., Maricic, J., Marino, A., Marshak, M., Marshall, C., Marshall, J., Marteau, J., Martin-Albo, J., Martinez, D., Matsuno, S., Matthews, J., Mauger, C., Mavrokoridis, K., Mayilyan, D., Mazzucato, E., McCauley, N., McCluskey, E., McConkey, N., McDonald, K., McFarland, K. S., McGowan, A. M., McGrew, C., McKeown, R., McNulty, D., McTaggart, R., Mefodiev, A., Mehrian, M., Mehta, P., Mei, D., Mena, O., Menary, S., Mendez, H., Menegolli, A., Meng, G., Meng, Y., Merritt, H., Mertins, D., Messier, M., Metcalf, W., Mewes, M., Meyer, H., Miao, T., Milincic, R., Miller, W., Mills, G., Mineev, O., Miranda, O., Mishra, C. S., Mishra, S. R., Mitrica, B., Mladenov, D., Mocioiu, I., Mohanta, R., Mokhov, N., Montanari, C., Montanari, D., Moon, J., Mooney, M., Moore, C., Morfin, J., Morgan, B., Morris, C., Morse, W., Moss, Z., Mossey, C., Moura, C. A., Mousseau, J., Mualem, L., Muether, M., Mufson, S., Murphy, S., Musser, J., Musser, R., Nakajima, Y., Naples, D., Navarro, J., Navas, D., Nelson, J., Nessi, M., Newcomer, M., Ng, Y., Nichol, R., Nicholls, T. C., Nikolics, K., Niner, E., Norris, B., Noto, F., Novakova, P., Novella, P., Nowak, J., Nunes, M. S., O'Keeffe, H., Oldeman, R., Oliveira, R., Olson, T., Onishchuk, Y., Osta, J., Ovsjannikova, T., Page, B., Pakvasa, S., Pal, S., Palamara, O., Palazzo, A., Paley, J., Palomares, C., Pantic, E., Paolone, V., Papadimitriou, V., Park, J., Parke, S., Parsa, Z., Pascoli, S., Patterson, R., Patton, S., Patzak, T., Paulos, B., Paulucci, L., Pavlovic, Z., Pawloski, G., Peeters, S., Pennacchio, E., Perch, A., Perdue, G. N., Periale, L., Perkin, J. D., Pessard, H., Petrillo, G., Petti, R., Petukhov, A., Pietropaolo, F., Plunkett, R., Pordes, S., Potekhin, M., Potenza, R., Potukuchi, B., Poudyal, N., Prokofiev, O., Pruthi, N., Przewlocki, P., Pushka, D., Qian, X., Raaf, J. L., Raboanary, R., Radeka, V., Radovic, A., Raffelt, G., Rakhno, I., Rakotondramanana, H. T., Rakotondravohitra, L., Ramachers, Y. A., Rameika, R., Ramsey, J., Rappoldi, A., Raselli, G., Ratoff, P., Rebel, B., Regenfus, C., Reichenbacher, J., Reitzner, D., Remoto, A., Renshaw, A., Rescia, S., Richardson, M., Rielage, K., Riesselmann, K., Robinson, M., Rochester, L., Rodrigues, O. B., Rodrigues, P., Roe, B., Rosen, M., Roser, R. M., Ross-Lonergan, M., Rossella, M., Rubbia, A., Rubbia, C., Rucinski, R., RudolphvonRohr, C., Russell, B., Ruterbories, D., Saakyan, R., Sahu, N., Sala, P., Samios, N., Sanchez, F., Sanchez, M., Sands, B., Santana, S., Santorelli, R., Santucci, G., Saoulidou, N., Scaramelli, A., Schellman, H., Schlabach, P., Schmitt, R., Schmitz, D., Schneps, J., Scholberg, K., Schukraft, A., Schwehr, J., Segreto, E., Seibert, S., Sepulveda-Quiroz, J. A., Sergiampietri, F., Sexton-Kennedy, L., Sgalaberna, D., Shaevitz, M., Shahi, J., Shahsavarani, S., Shanahan, P., Shankar, S. U., Sharma, R., Sharma, R. K., Shaw, T., Shrock, R., Shyrma, I., Simos, N., Sinev, G., Singh, I., Singh, J., Singh, V., Sinnis, G., Sippach, W., Smargianaki, D., Smy, M., Snider, E., Snopok, P., Sobczyk, J., Sobel, H., Soderberg, M., Solomey, N., Sondheim, W., Sorel, M., Sousa, A., Soustruznik, K., Spitz, J., Spooner, N. J., Stancari, M., Stancu, I., Stefan, D., Steiner, H. M., Stewart, J., Stock, J., Stoica, S., Stone, J., Strait, J., Strait, M., Strauss, T., Striganov, S., Sulej, R., Sullivan, G., Sun, Y., Suter, L., Sutera, C. M., Svoboda, R., Szczerbinska, B., Szelc, A., Söldner-Rembold, S., Talaga, R., Tamsett, M., Tariq, S., Tatar, E., Tayloe, R., Taylor, C., Taylor, D., Terao, K., Thiesse, M., Thomas, J., Thompson, L. F., Thomson, M., Thorn, C., Thorpe, M., Tian, X., Tiedt, D., Timm, S. C., Tonazzo, A., Tope, T., Topkar, A., Torres, F. R., Torti, M., Tortola, M., Tortorici, F., Toups, M., Touramanis, C., Tripathi, M., Tropin, I., Tsai, Y., Tsang, K. V., Tsenov, R., Tufanli, S., Tull, C., Turner, J., Tzanov, M., Tziaferi, E., Uchida, Y., Urheim, J., Usher, T., Vagins, M., Vahle, P., Valdiviesso, G. A., Valerio, L., Vallari, Z., Valle, J., VanBerg, R., VandeWater, R., VanGemmeren, P., Varanini, F., Varner, G., Vasseur, G., Vaziri, K., Velev, G., Ventura, S., Verdugo, A., Viant, T., Vieira, T. V., Vignoli, C., Vilela, C., Viren, B., Vrba, T., Wachala, T., Wahl, D., Wallbank, M., Walsh, N., Wang, B., Wang, H., Wang, L., Wang, T., Warburton, T. K., Warner, D., Wascko, M., Waters, D., Watson, T. B., Weber, A., Weber, M., Wei, W., Weinstein, A., Wells, D., Wenman, D., Wetstein, M., White, A., Whitehead, L., Whittington, D., Wilking, M., Willhite, J., Wilson, P., Wilson, R. J., Winslow, L., Wittich, P., Wojcicki, S., Wong, H. H., Wood, K., Worcester, E., Worcester, M., Wu, S., Xin, T., Yanagisawa, C., Yang, S., Yang, T., Yarritu, K., Ye, J., Yeh, M., Yershov, N., Yonehara, K., Yu, B., Yu, J., Zalesak, J., Zalewska, A., Zamorano, B., Zang, L., Zani, A., Zavala, G., Zeller, G., Zhang, C., Zimmerman, E. D., Zito, M., Zwaska, R., Institut de Physique Nucléaire de Lyon (IPNL), Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), AstroParticule et Cosmologie (APC (UMR_7164)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS), Laboratoire d'Annecy de Physique des Particules (LAPP), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Centre National de la Recherche Scientifique (CNRS), DUNE, Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Girod, Dominique, Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7), and Laboratoire d'Annecy de Physique des Particules (LAPP/Laboratoire d'Annecy-le-Vieux de Physique des Particules)
- Subjects
Particle physics ,Physics - Instrumentation and Detectors ,[PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,FOS: Physical sciences ,Neutrino beam ,7. Clean energy ,01 natural sciences ,Physics::Geophysics ,High Energy Physics - Experiment ,Nuclear physics ,High Energy Physics - Experiment (hep-ex) ,Conceptual design ,0103 physical sciences ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Deep Underground Neutrino Experiment ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,010306 general physics ,Baseline (configuration management) ,Neutrino oscillation ,Physics ,010308 nuclear & particles physics ,High Energy Physics::Phenomenology ,Instrumentation and Detectors (physics.ins-det) ,Neutrino detector ,[PHYS.PHYS.PHYS-INS-DET] Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,Liquid argon ,High Energy Physics::Experiment ,Neutrino - Abstract
see paper for full list of authors; This document presents the Conceptual Design Report (CDR) put forward by an international neutrino community to pursue the Deep Underground Neutrino Experiment at the Long-Baseline Neutrino Facility (LBNF/DUNE), a groundbreaking science experiment for long-baseline neutrino oscillation studies and for neutrino astrophysics and nucleon decay searches. The DUNE far detector will be a very large modular liquid argon time-projection chamber (LArTPC) located deep underground, coupled to the LBNF multi-megawatt wide-band neutrino beam. DUNE will also have a high-resolution and high-precision near detector.
- Published
- 2016
20. Long-Baseline Neutrino Facility (LBNF) and Deep Underground Neutrino Experiment (DUNE): Conceptual Design Report
- Author
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Acciarri, R., Acero, M.A., Adamowski, M., Adams, C., Adamson, P., Adhikari, S., Ahmad, Z., Albright, C.H., Alion, T., Amador, E., Anderson, J., Anderson, K., Andreopoulos, C., Andrews, M., Andrews, R., Anghel, I., Anjos, J. d., Ankowski, A., Antonello, M., Aranda Fernandez, A., Ariga, A., Ariga, T., Aristizabal, D., Arrieta-Diaz, E., Aryal, K., Asaadi, J., Asner, D., Athar, M.S., Auger, M., Aurisano, A., Aushev, V., Autiero, D., Avila, M., Back, J.J., Bai, X., Baibussinov, B., Baird, M., Balantekin, A.B., Baller, B., Ballett, P., Bambah, B., Bansal, M., Bansal, S., Barker, G.J., Barletta, W.A., Barr, G., Barros, N., Bartosz, B., Bartoszek, L., Bashyal, A., Bass, M., Bay, F., Beacom, J., Behera, B.R., Bellettini, G., Bellini, V., Beltramello, O., Benekos, N., Benetti, P.A., Bercellie, A., Bergevin, M., Berman, E., Berns, H., Bernstein, R., Bertolucci, S., Bhandari, B., Bhatnagar, V., Bhuyan, B., Bian, J., Biery, K., Bishai, M., Blackburn, T., Blake, A., Blaszczyk, F. d. M., Blaufuss, E., Bleakley, B., Blucher, E., Bocean, V., Boffelli, F., Boissevain, J., Bolognesi, S., Bolton, T., Bonesini, M., Boone, T., Booth, C., Bordoni, S., Borysova, M., Bourguille, B., Boyd, S.B., Brailsford, D., Brandt, A., Bremer, J., Brice, S., Bromberg, C., Brooijmans, G., Brown, G., Brown, R., Brunetti, G., Bu, X., Buchanan, N., Budd, H., Bugg, B., Calafiura, P., Calligarich, E., Calvo, E., Camilleri, L., Campanelli, M., Cantini, C., Carls, B., Carr, R., Cascella, M., Castromonte, C., CatanoMur, E., Mur, E.Catano, Cavanna, F., Centro, S., CerveraVillanueva, A., Cervera Villanueva, A., Chalifour, M., Chandratre, V.B., Chatterjee, A., Chattopadhyay, S., Chaussard, L., Chembra, S., Chen, H., Chen, K., Chen, M., Cherdack, D., Chi, C., Childress, S., Choubey, S., Choudhary, B.C., Christodoulou, G., Christofferson, C., Church, E., Cianci, D., Cline, D., Coan, T., Cocco, A., Coelho, J., Cole, P., Collin, G., Conrad, J.M., Convery, M., Corey, R., Corwin, L., Cranshaw, J., Crivelli, P., Cronin-Hennessy, D., Curioni, A., Cushing, J., Adams, D.L., Dale, D., Das, S.R., Davenne, T., Davies, G.S., Davies, J., Dawson, J., De, K., de Gouvea, A., deGouvea, A., de Jong, J.K., de Jong, P., De Lurgio, P., deJong, P., DeLurgio, P., Decowski, M., Delbart, A., Densham, C., Dharmapalan, R., Dhingra, N., Di Luise, S., DiLuise, S., Diamantopoulou, M., Diaz, J.S., Diaz Bautista, G., DiazBautista, G., Diwan, M., Djurcic, Z., Dolph, J., Drake, G., Duchesneau, D., Duvernois, M., Duyang, H., Dwyer, D.A., Dye, S., Dytman, S., Eberly, B., Edgecock, R., Edmunds, D., Elliott, S., Elnimr, M., Emery, S., Endress, E., Eno, S., Ereditato, A., Escobar, C.O., Evans, J., Falcone, A., Falk, L., Farbin, A., Farnese, C., Farzan, Y., Fava, A., Favilli, L., Felde, J., Felix, J., Fernandes, S., Fields, L., Finch, A., Fitton, M., Fleming, B., Forest, T., Fowler, J., Fox, W., Fried, J., Friedland, A., Fuess, S., Fujikawa, B., Gago, A., Gallagher, H., Galymov, S., Gamble, T., Gandhi, R., Garcia-Gamez, D., Gardiner, S., Garvey, G., Gehman, V.M., Gendotti, A., Geronimo, G. d., Ghag, C., Ghoshal, P., Gibin, D., Gil-Botella, I., Gill, R., Girardelli, D., Giri, A., Glavin, S., Goeldi, D., Golapinni, S., Gold, M., Gomes, R.A., GomezCadenas, J.J., Gomez Cadenas, J.J., Goodman, M.C., Gorbunov, D., Goswami, S., Graf, N., Graham, M., Gramelini, E., Gran, R., Grant, C., Grant, N., Greco, V., Greenlee, H., Greenler, L., Greenley, C., Groh, M., Grullon, S., Grundy, T., Grzelak, K., Guardincerri, E., Guarino, V., Guarnaccia, E., Guedes, G.P., Guenette, R., Guglielmi, A., Habig, A.T., Hackenburg, R.W., Hackenburg, A., Hadavand, H., Haenni, R., Hahn, A., Haigh, M.D., Haines, T., Hamernik, T., Handler, T., Hans, S., Harris, D., Hartnell, J., Hasegawa, T., Hatcher, R., Hatzikoutelis, A., Hays, S., Hazen, E., Headley, M., Heavey, A., Heeger, K., Heise, J., Hennessy, K., Hewes, J., Hewes, V., Higuera, A., Hill, T., Himmel, A., Hogan, M., Holanda, P., Holin, A., Honey, W., Horikawa, S., Horton-Smith, G., Howard, B., Howell, J., Hurh, P., Huston, J., Hylen, J., Imlay, R., Insler, J., Introzzi, G., Ioanisyan, D., Ioannisian, A., Iwamoto, K., Izmaylov, A., Jackson, C., Jaffe, D.E., James, C., James, E., Jediny, F., Jen, C., Jhingan, A., Jimenez, S., Jo, J.H., Johnson, M., Johnson, R., Johnstone, J., Jones, B.J., Joshi, J., Jostlein, H., Jung, C.K., Junk, T., Kaboth, A., Kadel, R., Kafka, T., Kalousis, L., Kamyshkov, Y., Karagiorgi, G., Karasavvas, D., Karyotakis, Y., Kaur, A., Kaur, P., Kayser, B., Kazaryan, N., Kearns, E., Keener, P., Kemboi, S., Kemp, E., Kettell, S.H., Khabibullin, M., Khandaker, M., Khotjantsev, A., Kirby, B., Kirby, M., Klein, J., Kobilarcik, T., Kohn, S., Koizumi, G., Kopylov, A., Kordosky, M., Kormos, L., Kose, U., Kostelecky, A., Kramer, M., Kreslo, I., Kriske, R., Kropp, W., Kudenko, Y., Kudryavtsev, V.A., Kulagin, S., Kumar, A., Kumar, G., Kumar, J., Kumar, L., Kutter, T., Laminack, A., Lande, K., Lane, C., Lang, K., Lanni, F., Learned, J., Lebrun, P., Lee, D., Lee, H., Lee, K., Lee, W.M., LeiguideOliveira, M.A., Leigui de Oliveira, M.A., Li, Q., Li, S., Li, X., Li, Y., Li, Z., Libo, J., Lin, C.S., Lin, S., Ling, J., Link, J., Liptak, Z., Lissauer, D., Littenberg, L., Littlejohn, B., Liu, Q., Liu, T., Lockwitz, S., Lockyer, N., Loew, T., Lokajicek, M., Long, K., Lopes, M.D.L., Lopez, J.P., Losecco, J., Louis, W., Lowery, J., Luethi, M., Luk, K., Lundberg, B., Lundin, T., Luo, X., Lux, T., Lykken, J., Machado, A.A., Macier, J.R., Magill, S., Mahler, G., Mahn, K., Malek, M., Malhotra, S., Malon, D., Mammoliti, F., Mancina, S., Mandal, S.K., Mandodi, S., Manly, S.L., Mann, A., Marchionni, A., Marciano, W., Mariani, C., Maricic, J., Marino, A., Marshak, M., Marshall, C., Marshall, J., Marteau, J., Martin-Albo, J., Martinez, D., Matsuno, S., Matthews, J., Mauger, C., Mavrokoridis, K., Mayilyan, D., Mazzucato, E., McCauley, N., McCluskey, E., McConkey, N., McDonald, K., McFarland, K.S., McGowan, A.M., McGrew, C., McKeown, R., 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Palazzo, A., Paley, J., Palomares, C., Pantic, E., Paolone, V., Papadimitriou, V., Park, J., Parke, S., Parsa, Z., Pascoli, S., Patterson, R., Patton, S., Patzak, T., Paulos, B., Paulucci, L., Pavlovic, Z., Pawloski, G., Peeters, S., Pennacchio, E., Perch, A., Perdue, G.N., Periale, L., Perkin, J.D., Pessard, H., Petrillo, G., Petti, R., Petukhov, A., Pietropaolo, F., Plunkett, R., Pordes, S., Potekhin, M., Potenza, R., Potukuchi, B., Poudyal, N., Prokofiev, O., Pruthi, N., Przewlocki, P., Pushka, D., Qian, X., Raaf, J.L., Raboanary, R., Radeka, V., Radovic, A., Raffelt, G., Rakhno, I., Rakotondramanana, H.T., Rakotondravohitra, L., Ramachers, Y.A., Rameika, R., Ramsey, J., Rappoldi, A., Raselli, G., Ratoff, P., Rebel, B., Regenfus, C., Reichenbacher, J., Reitzner, D., Remoto, A., Renshaw, A., Rescia, S., Richardson, M., Rielage, K., Riesselmann, K., Robinson, M., Rochester, L., Rodrigues, O.B., Rodrigues, P., Roe, B., Rosen, M., Roser, R.M., Ross-Lonergan, M., Rossella, M., Rubbia, A., Rubbia, C., Rucinski, R., von Rohr, C.Rudolph, RudolphvonRohr, C., Russell, B., Ruterbories, D., Saakyan, R., Sahu, N., Sala, P., Samios, N., Sanchez, F., Sanchez, M., Sands, B., Santana, S., Santorelli, R., Santucci, G., Saoulidou, N., Scaramelli, A., Schellman, H., Schlabach, P., Schmitt, R., Schmitz, D., Schneps, J., Scholberg, K., Schukraft, A., Schwehr, J., Segreto, E., Seibert, S., Sepulveda-Quiroz, J.A., Sergiampietri, F., Sexton-Kennedy, L., Sgalaberna, D., Shaevitz, M., Shahi, J., Shahsavarani, S., Shanahan, P., Shankar, S.U., Sharma, R., Sharma, R.K., Shaw, T., Shrock, R., Shyrma, I., Simos, N., Sinev, G., Singh, I., Singh, J., Singh, V., Sinnis, G., Sippach, W., Smargianaki, D., Smy, M., Snider, E., Snopok, P., Sobczyk, J., Sobel, H., Soderberg, M., Solomey, N., Sondheim, W., Sorel, M., Sousa, A., Soustruznik, K., Spitz, J., Spooner, N.J., Stancari, M., Stancu, I., Stefan, D., Steiner, H.M., Stewart, J., Stock, J., Stoica, S., Stone, J., Strait, J., Strait, M., Strauss, T., Striganov, S., Sulej, R., Sullivan, G., Sun, Y., Suter, L., Sutera, C.M., Svoboda, R., Szczerbinska, B., Szelc, A., Soldner-Rembold, S., Talaga, R., Tamsett, M., Tariq, S., Tatar, E., Tayloe, R., Taylor, C., Taylor, D., Terao, K., Thiesse, M., Thomas, J., Thompson, L.F., Thomson, M., Thorn, C., Thorpe, M., Tian, X., Tiedt, D., Timm, S.C., Tonazzo, A., Tope, T., Topkar, A., Torres, F.R., Torti, M., Tortola, M., Tortorici, F., Toups, M., Touramanis, C., Tripathi, M., Tropin, I., Tsai, Y., Tsang, K.V., Tsenov, R., Tufanli, S., Tull, C., Turner, J., Tzanov, M., Tziaferi, E., Uchida, Y., Urheim, J., Usher, T., Vagins, M., Vahle, P., Valdiviesso, G.A., Valerio, L., Vallari, Z., Valle, J., Van Berg, R., Van de Water, R., VanBerg, R., VandeWater, R., Van Gemmeren, P., VanGemmeren, P., Varanini, F., Varner, G., Vasseur, G., Vaziri, K., Velev, G., Ventura, S., Verdugo, A., Viant, T., Vieira, T.V., Vignoli, C., Vilela, C., Viren, B., Vrba, T., Wachala, T., Wahl, D., Wallbank, M., Walsh, N., Wang, B., Wang, H., Wang, L., Wang, T., Warburton, T.K., Warner, D., Wascko, M., Waters, D., Watson, T.B., Weber, A., Weber, M., Wei, W., Weinstein, A., Wells, D., Wenman, D., Wetstein, M., White, A., Whitehead, L., Whittington, D., Wilking, M., Willhite, J., Wilson, P., Wilson, R.J., Winslow, L., Wittich, P., Wojcicki, S., Wong, H.H., Wood, K., Worcester, E., Worcester, M., Wu, S., Xin, T., Yanagisawa, C., Yang, S., Yang, T., Yarritu, K., Ye, J., Yeh, M., Yershov, N., Yonehara, K., Yu, B., Yu, J., Zalesak, J., Zalewska, A., Zamorano, B., Zang, L., Zani, A., Zavala, G., Zeller, G., Zhang, C., Zimmerman, E.D., Zito, M., and Zwaska, R.
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Condensed Matter::Soft Condensed Matter ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,High Energy Physics::Phenomenology ,High Energy Physics::Experiment ,Detectors and Experimental Techniques ,Nonlinear Sciences::Pattern Formation and Solitons ,Physics::Geophysics - Abstract
This document presents the Conceptual Design Report (CDR) put forward by an international neutrino community to pursue the Deep Underground Neutrino Experiment at the Long-Baseline Neutrino Facility (LBNF/DUNE), a groundbreaking science experiment for long-baseline neutrino oscillation studies and for neutrino astrophysics and nucleon decay searches. The DUNE far detector will be a very large modular liquid argon time-projection chamber (LArTPC) located deep underground, coupled to the LBNF multi-megawatt wide-band neutrino beam. DUNE will also have a high-resolution and high-precision near detector. This document presents the Conceptual Design Report (CDR) put forward by an international neutrino community to pursue the Deep Underground Neutrino Experiment at the Long-Baseline Neutrino Facility (LBNF/DUNE), a groundbreaking science experiment for long-baseline neutrino oscillation studies and for neutrino astrophysics and nucleon decay searches. The DUNE far detector will be a very large modular liquid argon time-projection chamber (LArTPC) located deep underground, coupled to the LBNF multi-megawatt wide-band neutrino beam. DUNE will also have a high-resolution and high-precision near detector.
- Published
- 2016
21. Long-Baseline Neutrino Facility (LBNF) and Deep Underground Neutrino Experiment (DUNE) Conceptual Design Report, Volume 4 The DUNE Detectors at LBNF
- Author
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Acciarri, R, Acero, MA, Adamowski, M, Adams, C, Adamson, P, Adhikari, S, Ahmad, Z, Albright, CH, Alion, T, Amador, E, Anderson, J, Anderson, K, Andreopoulos, C, Andrews, M, Andrews, R, Anghel, I, Anjos, JD, Ankowski, A, Antonello, M, ArandaFernandez, A, Ariga, A, Ariga, T, Aristizabal, D, Arrieta-Diaz, E, Aryal, K, Asaadi, J, Asner, D, Athar, MS, Auger, M, Aurisano, A, Aushev, V, Autiero, D, Avila, M, Back, JJ, Bai, X, Baibussinov, B, Baird, M, Balantekin, AB, Baller, B, Ballett, P, Bambah, B, Bansal, M, Bansal, S, Barker, GJ, Barletta, WA, Barr, G, Barros, N, Bartoszek, L, Bashyal, A, Bass, M, Bay, F, Beacom, J, Behera, BR, Bellettini, G, Bellini, V, Beltramello, O, Benetti, PA, Bercellie, A, Bergevin, M, Berman, E, Berns, H, Bernstein, R, Bertolucci, S, Bhandari, B, Bhatnagar, V, Bhuyan, B, Bian, J, Biery, K, Bishai, M, Blackburn, T, Blake, A, Blaszczyk, FDM, Blaufuss, E, Bleakley, B, Blucher, E, Bocean, V, Boffelli, F, Boissevain, J, Bolognesi, S, Bolton, T, Bonesini, M, Boone, T, Booth, C, Bordoni, S, Borysova, M, Bourguille, B, Boyd, SB, Brailsford, D, Brandt, A, Bremer, J, Brice, S, Bromberg, C, Brooijmans, G, Brown, G, Brown, R, Brunetti, G, Bu, X, Buchanan, N, Budd, H, Bugg, B, Calafiura, P, Calligarich, E, Calvo, E, Camilleri, L, Campanelli, M, Cantini, C, Carls, B, Carr, R, Cascella, M, Castromonte, C, CatanoMur, E, Cavanna, F, Centro, S, CerveraVillanueva, A, Chandratre, VB, Chatterjee, A, Chattopadhyay, S, Chaussard, L, Chembra, S, Chen, H, Chen, K, Chen, M, Cherdack, D, Chi, C, Childress, S, Choubey, S, Choudhary, BC, Christodoulou, G, Christofferson, C, Church, E, Cianci, D, Cline, D, Coan, T, Cocco, A, Coelho, J, Cole, P, Collin, G, Conrad, JM, Convery, M, Corey, R, Corwin, L, Cranshaw, J, Crivelli, P, Cronin-Hennessy, D, Curioni, A, Cushing, J, Adams, DL, Dale, D, Das, SR, Davenne, T, Davies, GS, Davies, J, Dawson, J, De, K, deGouvea, A, deJong, JK, deJong, P, DeLurgio, P, Decowski, M, Delbart, A, Densham, C, Dharmapalan, R, Dhingra, N, DiLuise, S, 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Guardincerri, E, Guarino, V, Guarnaccia, E, Guedes, GP, Guenette, R, Guglielmi, A, Habig, AT, Hackenburg, RW, Hackenburg, A, Hadavand, H, Haenni, R, Hahn, A, Haigh, MD, Haines, T, Hamernik, T, Handler, T, Hans, S, Harris, D, Hartnell, J, Hasegawa, T, Hatcher, R, Hatzikoutelis, A, Hays, S, Hazen, E, Headley, M, Heavey, A, Heeger, K, Heise, J, Hennessy, K, Hewes, J, Higuera, A, Hill, T, Himmel, A, Hogan, M, Holanda, P, Holin, A, Honey, W, Horikawa, S, Horton-Smith, G, Howard, B, Howell, J, Hurh, P, Huston, J, Hylen, J, Imlay, R, Insler, J, Introzzi, G, Ioanisyan, D, Ioannisian, A, Iwamoto, K, Izmaylov, A, Jackson, C, Jaffe, DE, James, C, James, E, Jediny, F, Jen, C, Jhingan, A, Jiménez, S, Jo, JH, Johnson, M, Johnson, R, Johnstone, J, Jones, BJ, Joshi, J, Jostlein, H, Jung, CK, Junk, T, Kaboth, A, Kadel, R, Kafka, T, Kalousis, L, Kamyshkov, Y, Karagiorgi, G, Karasavvas, D, Karyotakis, Y, Kaur, A, Kaur, P, Kayser, B, Kazaryan, N, Kearns, E, Keener, P, Kemboi, S, Kemp, E, Kettell, SH, Khabibullin, M, Khandaker, M, Khotjantsev, A, Kirby, B, Kirby, M, Klein, J, Kobilarcik, T, Kohn, S, Koizumi, G, Kopylov, A, Kordosky, M, Kormos, L, Kose, U, Kostelecky, A, Kramer, M, Kreslo, I, Kriske, R, Kropp, W, Kudenko, Y, Kudryavtsev, VA, Kulagin, S, Kumar, A, Kumar, G, Kumar, J, Kumar, L, Kutter, T, Laminack, A, Lande, K, Lane, C, Lang, K, Lanni, F, Learned, J, Lebrun, P, Lee, D, Lee, H, Lee, K, Lee, WM, LeiguideOliveira, MA, Li, Q, Li, S, Li, X, Li, Y, Li, Z, Libo, J, Lin, CS, Lin, S, Ling, J, Link, J, Liptak, Z, Lissauer, D, Littenberg, L, Littlejohn, B, Liu, Q, Liu, T, Lockwitz, S, Lockyer, N, Loew, T, Lokajicek, M, Long, K, Lopes, MDL, Lopez, JP, Losecco, J, Louis, W, Lowery, J, Luethi, M, Luk, K, Lundberg, B, Lundin, T, Luo, X, Lux, T, Lykken, J, Machado, AA, Macier, JR, Magill, S, Mahler, G, Mahn, K, Malek, M, Malhotra, S, Malon, D, Mammoliti, F, Mancina, S, Mandal, SK, Mandodi, S, Manly, SL, Mann, A, Marchionni, A, Marciano, W, Mariani, C, Maricic, J, Marino, A, Marshak, M, Marshall, C, Marshall, J, Marteau, J, Martin-Albo, J, Martinez, D, Matsuno, S, Matthews, J, Mauger, C, Mavrokoridis, K, Mayilyan, D, Mazzucato, E, McCauley, N, McCluskey, E, McConkey, N, McDonald, K, McFarland, KS, McGowan, AM, McGrew, C, McKeown, R, McNulty, D, McTaggart, R, Mefodiev, A, Mehrian, M, Mehta, P, Mei, D, Mena, O, Menary, S, Mendez, H, Menegolli, A, Meng, G, Meng, Y, Merritt, H, Mertins, D, Messier, M, Metcalf, W, Mewes, M, Meyer, H, Miao, T, Milincic, R, Miller, W, Mills, G, Mineev, O, Miranda, O, Mishra, CS, Mishra, SR, Mitrica, B, Mladenov, D, Mocioiu, I, Mohanta, R, Mokhov, N, Montanari, C, Montanari, D, Moon, J, Mooney, M, Moore, C, Morfin, J, Morgan, B, Morris, C, Morse, W, Moss, Z, Mossey, C, Moura, CA, Mousseau, J, Mualem, L, Muether, M, Mufson, S, Murphy, S, Musser, J, Musser, R, Nakajima, Y, Naples, D, Navarro, J, Navas, D, Nelson, J, Nessi, M, Newcomer, M, Ng, Y, Nichol, R, Nicholls, TC, Nikolics, K, Niner, E, Norris, B, Noto, F, Novakova, P, Novella, P, Nowak, J, Nunes, MS, O'Keeffe, H, Oldeman, R, Oliveira, R, Olson, T, Onishchuk, Y, Osta, J, Ovsjannikova, T, Page, B, Pakvasa, S, Pal, S, Palamara, O, Palazzo, A, Paley, J, Palomares, C, Pantic, E, Paolone, V, Papadimitriou, V, Park, J, Parke, S, Parsa, Z, Pascoli, S, Patterson, R, Patton, S, Patzak, T, Paulos, B, Paulucci, L, Pavlovic, Z, Pawloski, G, Peeters, S, Pennacchio, E, Perch, A, Perdue, GN, Periale, L, Perkin, JD, Pessard, H, Petrillo, G, Petti, R, Petukhov, A, Pietropaolo, F, Plunkett, R, Pordes, S, Potekhin, M, Potenza, R, Potukuchi, B, Poudyal, N, Prokofiev, O, Pruthi, N, Przewlocki, P, Pushka, D, Qian, X, Raaf, JL, Raboanary, R, Radeka, V, Radovic, A, Raffelt, G, Rakhno, I, Rakotondramanana, HT, Rakotondravohitra, L, Ramachers, YA, Rameika, R, Ramsey, J, Rappoldi, A, Raselli, G, Ratoff, P, Rebel, B, Regenfus, C, Reichenbacher, J, Reitzner, D, Remoto, A, Renshaw, A, Rescia, S, Richardson, M, Rielage, K, Riesselmann, K, Robinson, M, Rochester, L, Rodrigues, OB, Rodrigues, P, Roe, B, Rosen, M, Roser, RM, Ross-Lonergan, M, Rossella, M, Rubbia, A, Rubbia, C, Rucinski, R, RudolphvonRohr, C, Russell, B, Ruterbories, D, Saakyan, R, Sahu, N, Sala, P, Samios, N, Sanchez, F, Sanchez, M, Sands, B, Santana, S, Santorelli, R, Santucci, G, Saoulidou, N, Scaramelli, A, Schellman, H, Schlabach, P, Schmitt, R, Schmitz, D, Schneps, J, Scholberg, K, Schukraft, A, Schwehr, J, Segreto, E, Seibert, S, Sepulveda-Quiroz, JA, Sergiampietri, F, Sexton-Kennedy, L, Sgalaberna, D, Shaevitz, M, Shahi, J, Shahsavarani, S, Shanahan, P, Shankar, SU, Sharma, R, Sharma, RK, Shaw, T, Shrock, R, Shyrma, I, Simos, N, Sinev, G, Singh, I, Singh, J, Singh, V, Sinnis, G, Sippach, W, Smargianaki, D, Smy, M, Snider, E, Snopok, P, Sobczyk, J, Sobel, H, Soderberg, M, Solomey, N, Sondheim, W, Sorel, M, Sousa, A, Soustruznik, K, Spitz, J, Spooner, NJ, Stancari, M, Stancu, I, Stefan, D, Steiner, HM, Stewart, J, Stock, J, Stoica, S, Stone, J, Strait, J, Strait, M, Strauss, T, Striganov, S, Sulej, R, Sullivan, G, Sun, Y, Suter, L, Sutera, CM, Svoboda, R, Szczerbinska, B, Szelc, A, Söldner-Rembold, S, Talaga, R, Tamsett, M, Tariq, S, Tatar, E, Tayloe, R, Taylor, C, Taylor, D, Terao, K, Thiesse, M, Thomas, J, Thompson, LF, Thomson, M, Thorn, C, Thorpe, M, Tian, X, Tiedt, D, Timm, SC, Tonazzo, A, Tope, T, Topkar, A, Torres, FR, Torti, M, Tortola, M, Tortorici, F, Toups, M, Touramanis, C, Tripathi, M, Tropin, I, Tsai, Y, Tsang, KV, Tsenov, R, Tufanli, S, Tull, C, Turner, J, Tzanov, M, Tziaferi, E, Uchida, Y, Urheim, J, Usher, T, Vagins, M, Vahle, P, Valdiviesso, GA, Valerio, L, Vallari, Z, Valle, J, VanBerg, R, VandeWater, R, VanGemmeren, P, Varanini, F, Varner, G, Vasseur, G, Vaziri, K, Velev, G, Ventura, S, Verdugo, A, Viant, T, Vieira, TV, Vignoli, C, Vilela, C, Viren, B, Vrba, T, Wachala, T, Wahl, D, Wallbank, M, Walsh, N, Wang, B, Wang, H, Wang, L, Wang, T, Warburton, TK, Warner, D, Wascko, M, Waters, D, Watson, TB, Weber, A, Weber, M, Wei, W, Weinstein, A, Wells, D, Wenman, D, Wetstein, M, White, A, Whitehead, L, Whittington, D, Wilking, M, Willhite, J, Wilson, P, Wilson, RJ, Winslow, L, Wittich, P, Wojcicki, S, Wong, HH, Wood, K, Worcester, E, Worcester, M, Wu, S, Xin, T, Yanagisawa, C, Yang, S, Yang, T, Yarritu, K, Ye, J, Yeh, M, Yershov, N, Yonehara, K, Yu, B, Yu, J, Zalesak, J, Zalewska, A, Zamorano, B, Zang, L, Zani, A, Zavala, G, Zeller, G, Zhang, C, Zimmerman, ED, Zito, M, Zwaska, R, Institut de Physique Nucléaire de Lyon (IPNL), Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire d'Annecy de Physique des Particules (LAPP), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Centre National de la Recherche Scientifique (CNRS), AstroParticule et Cosmologie (APC (UMR_7164)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS), DUNE, Laboratoire d'Annecy de Physique des Particules (LAPP/Laboratoire d'Annecy-le-Vieux de Physique des Particules), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7), Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Observatoire de Paris, and Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)
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Condensed Matter::Soft Condensed Matter ,High Energy Physics - Experiment (hep-ex) ,Physics - Instrumentation and Detectors ,Physics::Instrumentation and Detectors ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,FOS: Physical sciences ,High Energy Physics::Experiment ,Instrumentation and Detectors (physics.ins-det) ,Nonlinear Sciences::Pattern Formation and Solitons ,Physics::Geophysics ,High Energy Physics - Experiment - Abstract
A description of the proposed detector(s) for DUNE at LBNF
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- 2016
22. Long-Baseline Neutrino Facility (LBNF) and Deep Underground Neutrino Experiment (DUNE): Conceptual Design Report Volume
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Acciarri, R., Acero, M.A., Adamowski, M., Adams, C., Adamson, P., Adhikari, S., Ahmad, Z., Albright, C.H., Alion, T., Amador, E., Anderson, J., Anderson, K., Andreopoulos, C., Andrews, M., Andrews, R., Anghel, I., Anjos, J. d., Ankowski, A., Antonello, M., Aranda Fernandez, A., Ariga, A., Ariga, T., Aristizabal, D., Arrieta-Diaz, E., Aryal, K., Asaadi, J., Asner, D., Athar, M.S., Auger, M., Aurisano, A., Aushev, V., Autiero, D., Avila, M., Back, J.J., Bai, X., Baibussinov, B., Baird, M., Balantekin, A.B., Baller, B., Ballett, P., Bambah, B., Bansal, M., Bansal, S., Barker, G.J., Barletta, W.A., Barr, G., Barros, N., Bartosz, B., Bartoszek, L., Bashyal, A., Bass, M., Bay, F., Beacom, J., Behera, B.R., Bellettini, G., Bellini, V., Beltramello, O., Benekos, N., Benetti, P.A., Bercellie, A., Bergevin, M., Berman, E., Berns, H., Bernstein, R., Bertolucci, S., Bhandari, B., Bhatnagar, V., Bhuyan, B., Bian, J., Biery, K., Bishai, M., Blackburn, T., Blake, A., Blaszczyk, F. d. M., Blaufuss, E., Bleakley, B., Blucher, E., Bocean, V., Boffelli, F., Boissevain, J., Bolognesi, S., Bolton, T., Bonesini, M., Boone, T., Booth, C., Bordoni, S., Borysova, M., Bourguille, B., Boyd, S.B., Brailsford, D., Brandt, A., Bremer, J., Brice, S., Bromberg, C., Brooijmans, G., Brown, G., Brown, R., Brunetti, G., Bu, X., Buchanan, N., Budd, H., Bugg, B., Calafiura, P., Calligarich, E., Calvo, E., Camilleri, L., Campanelli, M., Cantini, C., Carls, B., Carr, R., Cascella, M., Castromonte, C., CatanoMur, E., Mur, E.Catano, Cavanna, F., Centro, S., CerveraVillanueva, A., Cervera Villanueva, A., Chalifour, M., Chandratre, V.B., Chatterjee, A., Chattopadhyay, S., Chaussard, L., Chembra, S., Chen, H., Chen, K., Chen, M., Cherdack, D., Chi, C., Childress, S., Choubey, S., Choudhary, B.C., Christodoulou, G., Christofferson, C., Church, E., Cianci, D., Cline, D., Coan, T., Cocco, A., Coelho, J., Cole, P., Collin, G., Conrad, J.M., Convery, M., Corey, R., Corwin, L., Cranshaw, J., Crivelli, P., Cronin-Hennessy, D., Curioni, A., Cushing, J., Adams, D.L., Dale, D., Das, S.R., Davenne, T., Davies, G.S., Davies, J., Dawson, J., De, K., de Gouvea, A., deGouvea, A., de Jong, J.K., de Jong, P., De Lurgio, P., deJong, P., DeLurgio, P., Decowski, M., Delbart, A., Densham, C., Dharmapalan, R., Dhingra, N., Di Luise, S., DiLuise, S., Diamantopoulou, M., Diaz, J.S., Diaz Bautista, G., DiazBautista, G., Diwan, M., Djurcic, Z., Dolph, J., Drake, G., Duchesneau, D., Duvernois, M., Duyang, H., Dwyer, D.A., Dye, S., Dytman, S., Eberly, B., Edgecock, R., Edmunds, D., Elliott, S., Elnimr, M., Emery, S., Endress, E., Eno, S., Ereditato, A., Escobar, C.O., Evans, J., Falcone, A., Falk, L., Farbin, A., Farnese, C., Farzan, Y., Fava, A., Favilli, L., Felde, J., Felix, J., Fernandes, S., Fields, L., Finch, A., Fitton, M., Fleming, B., Forest, T., Fowler, J., Fox, W., Fried, J., Friedland, A., Fuess, S., Fujikawa, B., Gago, A., Gallagher, H., Galymov, S., Gamble, T., Gandhi, R., Garcia-Gamez, D., Gardiner, S., Garvey, G., Gehman, V.M., Gendotti, A., Geronimo, G. d., Ghag, C., Ghoshal, P., Gibin, D., Gil-Botella, I., Gill, R., Girardelli, D., Giri, A., Glavin, S., Goeldi, D., Golapinni, S., Gold, M., Gomes, R.A., GomezCadenas, J.J., Gomez Cadenas, J.J., Goodman, M.C., Gorbunov, D., Goswami, S., Graf, N., Graham, M., Gramelini, E., Gran, R., Grant, C., Grant, N., Greco, V., Greenlee, H., Greenler, L., Greenley, C., Groh, M., Grullon, S., Grundy, T., Grzelak, K., Guardincerri, E., Guarino, V., Guarnaccia, E., Guedes, G.P., Guenette, R., Guglielmi, A., Habig, A.T., Hackenburg, R.W., Hackenburg, A., Hadavand, H., Haenni, R., Hahn, A., Haigh, M.D., Haines, T., Hamernik, T., Handler, T., Hans, S., Harris, D., Hartnell, J., Hasegawa, T., Hatcher, R., Hatzikoutelis, A., Hays, S., Hazen, E., Headley, M., Heavey, A., Heeger, K., Heise, J., Hennessy, K., Hewes, J., Hewes, V., Higuera, A., Hill, T., Himmel, A., Hogan, M., Holanda, P., Holin, A., Honey, W., Horikawa, S., Horton-Smith, G., Howard, B., Howell, J., Hurh, P., Huston, J., Hylen, J., Imlay, R., Insler, J., Introzzi, G., Ioanisyan, D., Ioannisian, A., Iwamoto, K., Izmaylov, A., Jackson, C., Jaffe, D.E., James, C., James, E., Jediny, F., Jen, C., Jhingan, A., Jimenez, S., Jo, J.H., Johnson, M., Johnson, R., Johnstone, J., Jones, B.J., Joshi, J., Jostlein, H., Jung, C.K., Junk, T., Kaboth, A., Kadel, R., Kafka, T., Kalousis, L., Kamyshkov, Y., Karagiorgi, G., Karasavvas, D., Karyotakis, Y., Kaur, A., Kaur, P., Kayser, B., Kazaryan, N., Kearns, E., Keener, P., Kemboi, S., Kemp, E., Kettell, S.H., Khabibullin, M., Khandaker, M., Khotjantsev, A., Kirby, B., Kirby, M., Klein, J., Kobilarcik, T., Kohn, S., Koizumi, G., Kopylov, A., Kordosky, M., Kormos, L., Kose, U., Kostelecky, V.A., Kramer, M., Kreslo, I., Kriske, R., Kropp, W., Kudenko, Y., Kudryavtsev, V.A., Kulagin, S., Kumar, A., Kumar, G., Kumar, J., Kumar, L., Kutter, T., Laminack, A., Lande, K., Lane, C., Lang, K., Lanni, F., Learned, J., Lebrun, P., Lee, D., Lee, H., Lee, K., Lee, W.M., LeiguideOliveira, M.A., Leigui de Oliveira, M.A., Li, Q., Li, S., Li, X., Li, Y., Li, Z., Libo, J., Lin, C.S., Lin, S., Ling, J., Link, J., Liptak, Z., Lissauer, D., Littenberg, L., Littlejohn, B., Liu, Q., Liu, T., Lockwitz, S., Lockyer, N., Loew, T., Lokajicek, M., Long, K., Lopes, M.D.L., Lopez, J.P., Losecco, J., Louis, W., Lowery, J., Luethi, M., Luk, K., Lundberg, B., Lundin, T., Luo, X., Lux, T., Lykken, J., Machado, A.A., Macier, J.R., Magill, S., Mahler, G., Mahn, K., Malek, M., Malhotra, S., Malon, D., Mammoliti, F., Mancina, S., Mandal, S.K., Mandodi, S., Manly, S.L., Mann, A., Marchionni, A., Marciano, W., Mariani, C., Maricic, J., Marino, A., Marshak, M., Marshall, C., Marshall, J., Marteau, J., Martin-Albo, J., Martinez, D., Matsuno, S., Matthews, J., Mauger, C., Mavrokoridis, K., Mayilyan, D., Mazzucato, E., McCauley, N., McCluskey, E., McConkey, N., McDonald, K., McFarland, K.S., McGowan, A.M., McGrew, C., McKeown, R., McNulty, D., McTaggart, R., Mefodiev, A., Mehrian, M., Mehta, P., Mei, D., Mena, O., Menary, S., Mendez, H., Menegolli, A., Meng, G., Meng, Y., Merritt, H., Mertins, D., Messier, M., Metcalf, W., Mewes, M., Meyer, H., Miao, T., Milincic, R., Miller, W., Mills, G., Mineev, O., Miranda, O., Mishra, C.S., Mishra, S.R., Mitrica, B., Mladenov, D., Mocioiu, I., Mohanta, R., Mokhov, N., Montanari, C., Montanari, D., Moon, J., Mooney, M., Moore, C., Morfin, J., Morgan, B., Morris, C., Morse, W., Moss, Z., Mossey, C., Moura, C.A., Mousseau, J., Mualem, L., Muether, M., Mufson, S., Murphy, S., Musser, J., Musser, R., Nakajima, Y., Naples, D., Napolitano, J., Navarro, J., Navas, D., Nelson, J., Nessi, M., Newcomer, M., Ng, Y., Nichol, R., Nicholls, T.C., Nikolics, K., Niner, E., Norris, B., Noto, F., Novakova, P., Novella, P., Nowak, J., Nunes, M.S., O'Keeffe, H., Oldeman, R., Oliveira, R., Olson, T., Onishchuk, Y., Osta, J., Ovsjannikova, T., Page, B., Pakvasa, S., Pal, S., Palamara, O., Palazzo, A., Paley, J., Palomares, C., Pantic, E., Paolone, V., Papadimitriou, V., Park, J., Parke, S., Parsa, Z., Pascoli, S., Patterson, R., Patton, S., Patzak, T., Paulos, B., Paulucci, L., Pavlovic, Z., Pawloski, G., Peeters, S., Pennacchio, E., Perch, A., Perdue, G.N., Periale, L., Perkin, J.D., Pessard, H., Petrillo, G., Petti, R., Petukhov, A., Pietropaolo, F., Plunkett, R., Pordes, S., Potekhin, M., Potenza, R., Potukuchi, B., Poudyal, N., Prokofiev, O., Pruthi, N., Przewlocki, P., Pushka, D., Qian, X., Raaf, J.L., Raboanary, R., Radeka, V., Radovic, A., Raffelt, G., Rakhno, I., Rakotondramanana, H.T., Rakotondravohitra, L., Ramachers, Y.A., Rameika, R., Ramsey, J., Rappoldi, A., Raselli, G., Ratoff, P., Rebel, B., Regenfus, C., Reichenbacher, J., Reitzner, D., Remoto, A., Renshaw, A., Rescia, S., Richardson, M., Rielage, K., Riesselmann, K., Robinson, M., Rochester, L., Rodrigues, O.B., Rodrigues, P., Roe, B., Rosen, M., Roser, R.M., Ross-Lonergan, M., Rossella, M., Rubbia, A., Rubbia, C., Rucinski, R., von Rohr, C.Rudolph, RudolphvonRohr, C., Russell, B., Ruterbories, D., Saakyan, R., Sahu, N., Sala, P., Samios, N., Sanchez, F., Sanchez, M., Sands, B., Santana, S., Santorelli, R., Santucci, G., Saoulidou, N., Scaramelli, A., Schellman, H., Schlabach, P., Schmitt, R., Schmitz, D., Schneps, J., Scholberg, K., Schukraft, A., Schwehr, J., Segreto, E., Seibert, S., Sepulveda-Quiroz, J.A., Sergiampietri, F., Sexton-Kennedy, L., Sgalaberna, D., Shaevitz, M., Shahi, J., Shahsavarani, S., Shanahan, P., Shankar, S.U., Sharma, R., Sharma, R.K., Shaw, T., Shrock, R., Shyrma, I., Simos, N., Sinev, G., Singh, I., Singh, J., Singh, V., Sinnis, G., Sippach, W., Smargianaki, D., Smy, M., Snider, E., Snopok, P., Sobczyk, J., Sobel, H., Soderberg, M., Solomey, N., Sondheim, W., Sorel, M., Sousa, A., Soustruznik, K., Spitz, J., Spooner, N.J., Stancari, M., Stancu, I., Stefan, D., Steiner, H.M., Stewart, J., Stock, J., Stoica, S., Stone, J., Strait, J., Strait, M., Strauss, T., Striganov, S., Sulej, R., Sullivan, G., Sun, Y., Suter, L., Sutera, C.M., Svoboda, R., Szczerbinska, B., Szelc, A., Soldner-Rembold, S., Talaga, R., Tamsett, M., Tariq, S., Tatar, E., Tayloe, R., Taylor, C., Taylor, D., Terao, K., Thiesse, M., Thomas, J., Thompson, L.F., Thomson, M., Thorn, C., Thorpe, M., Tian, X., Tiedt, D., Timm, S.C., Tonazzo, A., Tope, T., Topkar, A., Torres, F.R., Torti, M., Tortola, M., Tortorici, F., Toups, M., Touramanis, C., Tripathi, M., Tropin, I., Tsai, Y., Tsang, K.V., Tsenov, R., Tufanli, S., Tull, C., Turner, J., Tzanov, M., Tziaferi, E., Uchida, Y., Urheim, J., Usher, T., Vagins, M., Vahle, P., Valdiviesso, G.A., Valerio, L., Vallari, Z., Valle, J., Van Berg, R., Van de Water, R., VanBerg, R., VandeWater, R., Van Gemmeren, P., VanGemmeren, P., Varanini, F., Varner, G., Vasseur, G., Vaziri, K., Velev, G., Ventura, S., Verdugo, A., Viant, T., Vieira, T.V., Vignoli, C., Vilela, C., Viren, B., Vrba, T., Wachala, T., Wahl, D., Wallbank, M., Walsh, N., Wang, B., Wang, H., Wang, L., Wang, T., Warburton, T.K., Warner, D., Wascko, M., Waters, D., Watson, T.B., Weber, A., Weber, M., Wei, W., Weinstein, A., Wells, D., Wenman, D., Wetstein, M., White, A., Whitehead, L., Whittington, D., Wilking, M., Willhite, J., Wilson, P., Wilson, R.J., Winslow, L., Wittich, P., Wojcicki, S., Wong, H.H., Wood, K., Worcester, E., Worcester, M., Wu, S., Xin, T., Yanagisawa, C., Yang, S., Yang, T., Yarritu, K., Ye, J., Yeh, M., Yershov, N., Yonehara, K., Yu, B., Yu, J., Zalesak, J., Zalewska, A., Zamorano, B., Zang, L., Zani, A., Zavala, G., Zeller, G., Zhang, C., Zimmerman, E.D., Zito, M., and Zwaska, R.
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Physics::Instrumentation and Detectors ,High Energy Physics::Phenomenology ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,Detectors and Experimental Techniques ,Physics::Geophysics - Abstract
The Physics Program for the Deep Underground Neutrino Experiment (DUNE) at the Fermilab Long-Baseline Neutrino Facility (LBNF) is described. The Physics Program for the Deep Underground Neutrino Experiment (DUNE) at the Fermilab Long-Baseline Neutrino Facility (LBNF) is described.
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- 2015
23. Precision measurements of [formula omitted] in the deep inelastic regime
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Parno, D.S., Flay, D., Posik, M., Allada, K., Armstrong, W., Averett, T., Benmokhtar, F., Bertozzi, W., Camsonne, A., Canan, M., Cates, G.D., Chen, C., Chen, J.-P., Choi, S., Chudakov, E., Cusanno, F., Dalton, M.M., Deconinck, W., de Jager, C.W., Deng, X., Deur, A., Dutta, C., El Fassi, L., Franklin, G.B., Friend, M., Gao, H., Garibaldi, F., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Gomez, J., Guo, L., Hansen, O., Higinbotham, D.W., Holmstrom, T., Huang, J., Hyde, C., Ibrahim, H.F., Jiang, X., Jin, G., Katich, J., Kelleher, A., Kolarkar, A., Korsch, W., Kumbartzki, G., LeRose, J.J., Lindgren, R., Liyanage, N., Long, E., Lukhanin, A., Mamyan, V., McNulty, D., Meziani, Z.-E., Michaels, R., Mihovilovič, M., Moffit, B., Muangma, N., Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Nuruzzaman, Oh, Y., Peng, J.C., Qian, X., Qiang, Y., Rakhman, A., Riordan, S., Saha, A., Sawatzky, B., Shabestari, M.H., Shahinyan, A., Širca, S., Solvignon, P., Subedi, R., Sulkosky, V., Tobias, W.A., Troth, W., Wang, D., Wang, Y., Wojtsekhowski, B., Yan, X., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y., Zhang, Y.-W., Zhao, B., and Zheng, X.
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- 2015
- Full Text
- View/download PDF
24. A precision measurement of the $p$($e,e^\prime p\,$)$\pi^0$ reaction at threshold
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Chirapatpimol, K., Shabestari, M. H., Lindgren, R. A., Smith, L. C., Annand, J. R. M., Higinbotham, D. W., Moffit, B., Nelyubin, V., Norum, B. E., Allada, K., Aniol, K., Ardashev, K., Armstrong, D. S., Arndt, R. A., Benmokhtar, F., Bernstein, A. M., Bertozzi, W., Briscoe, W. J., Bimbot, L., Camsonne, A., Chen, J. -P., Choi, S., Chudakov, E., Cisbani, E., Cusanno, F., Dalton, M. M., Dutta, C., Egiyan, K., Fernandez-Ramirez, C., Feuerbach, R., Fissum, K. G., Frullani, S., Garibaldi, F., Gayou, O., Gilman, R., Gilad, S., Goity, J., Gomez, J., Hahn, B., Hamilton, D., Hansen, J. -O., Huang, J., Igarashi, R., Ireland, D., de Jager, C. W., Jin, X., Jiang, X., Jinasundera, T., Kellie, J., Keppel, C. E., Kolb, N., LeRose, J., Liyanage, N., Livingston, K., McNulty, D., Mercado, L., Michaels, R., Mihovilovic, M., Qian, S., Qian, X., Mailyan, S., Mamyan, V., Marrone, S., Monaghan, P., Nanda, S., Perdrisat, C. F., Piasetzky, E., Protopopescu, D., Punjabi, V., Qiang, Y., Rachek, I. A., Rakhman, A., Ron, G., Rosner, G., Saha, A., Sawatzky, B., Shahinyan, A., Sirca, S., Sparveris, N., Subedi, R. R., Suleiman, R., Strakovsky, I., Sulkosky, V., Moinelo, J., Voskanyan, H., Wang, K., Wang, Y., Watson, J., Watts, D., Wojtsekhowski, B., Workman, R. L., Yao, H., Zhan, X., and Zhang, Y.
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Nuclear Experiment - Abstract
New results are reported from a measurement of $\pi^0$ electroproduction near threshold using the $p(e,e^{\prime} p)\pi^0$ reaction. The experiment was designed to determine precisely the energy dependence of $s-$ and $p-$wave electromagnetic multipoles as a stringent test of the predictions of Chiral Perturbation Theory (ChPT). The data were taken with an electron beam energy of 1192 MeV using a two-spectrometer setup in Hall A at Jefferson Lab. For the first time, complete coverage of the $\phi^*_{\pi}$ and $\theta^*_{\pi}$ angles in the $p \pi^0$ center-of-mass was obtained for invariant energies above threshold from 0.5 MeV up to 15 MeV. The 4-momentum transfer $Q^2$ coverage ranges from 0.05 to 0.155 (GeV/c)$^2$ in fine steps. A simple phenomenological analysis of our data shows strong disagreement with $p-$wave predictions from ChPT for $Q^2>0.07$ (GeV/c)$^2$, while the $s-$wave predictions are in reasonable agreement., Comment: 5 pages, 6 figures
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- 2015
25. Precision Measurement of the p(e,e′p)π0 Reaction at Threshold
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Chirapatpimol, K., Shabestari, M.H., Lindgren, R.A., Smith, L.C., Annand, J.R.M., Higinbotham, D.W., Moffit, B., Nelyubin, V., Norum, B.E., Allada, K., Aniol, K., Ardashev, K., Armstrong, D.S., Arndt, R.A., Benmokhtar, F., Bernstein, A.M., Bertozzi, W., Briscoe, W.J., Bimbot, L., Camsonne, A., Chen, J.-P., Choi, S., Chudakov, E., Cisbani, E., Cusanno, F., Dalton, M.M., Dutta, C., Egiyan, K., Fernàndez-Ramìrez, C., Feuerbach, R., Fissum, K.G., Frullani, S., Garibaldi, F., Gayou, O., Gilman, R., Gilad, S., Goity, J., Gomez, J., Hahn, B., Hamilton, D., Hansen, J.-O., Huang, J., Igarashi, R., Ireland, D., De Jager, C.W., Jin, X., Jiang, X., Jinasundera, T., Kellie, J., Keppel, C.E., Kolb, N., LeRose, J., Liyanage, N., Livingston, K., McNulty, D., Mercado, L., Michaels, R., Mihovilovič, M., Qian, S., Qian, X., Mailyan, S., Mamyan, V., Marrone, S., Monaghan, P., Nanda, S., Perdrisat, C.F., Piasetzky, E., Protopopescu, D., Punjabi, V., Qiang, Y., Rachek, I.A., Rakhman, A., Riordan, S., Ron, G., Rosner, G., Saha, A., Sawatzky, B., Shahinyan, A., Širca, S., Sparveris, N., Subedi, R.R., Suleiman, R., Strakovsky, I., Sulkosky, V., Moinelo, J., Voskanyan, H., Wang, K., Wang, Y., Watson, J., Watts, D., Wojtsekhowski, B., Workman, R.L., Yao, H., Zhan, X., Zhang, Y., Institut de Physique Nucléaire d'Orsay (IPNO), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), and Hall A Collaboration
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[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,Nuclear Experiment - Abstract
International audience; New results are reported from a measurement of π0 electroproduction near threshold using the p(e,e′p)π0 reaction. The experiment was designed to determine precisely the energy dependence of s- and p-wave electromagnetic multipoles as a stringent test of the predictions of chiral perturbation theory (ChPT). The data were taken with an electron beam energy of 1192 MeV using a two-spectrometer setup in Hall A at Jefferson Lab. For the first time, complete coverage of the ϕ∗π and θ∗π angles in the pπ0 center of mass was obtained for invariant energies above threshold from 0.5 up to 15 MeV. The 4-momentum transfer Q2 coverage ranges from 0.05 to 0.155 (GeV/c)2 in fine steps. A simple phenomenological analysis of our data shows strong disagreement with p-wave predictions from ChPT for Q2>0.07 (GeV/c)2, while the s-wave predictions are in reasonable agreement.
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- 2015
26. The MOLLER Experiment: An Ultra-Precise Measurement of the Weak Mixing Angle Using M{\o}ller Scattering
- Author
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MOLLER Collaboration, Benesch, J., Brindza, P., Carlini, R. D., Chen, J-P., Chudakov, E., Covrig, S., Dalton, M. M., Deur, A., Gaskell, D., Gavalya, A., Gomez, J., Higinbotham, D. W., Keppel, C., Meekins, D., Michaels, R., Moffit, B., Roblin, Y., Suleiman, R., Wines, R., Wojtsekhowski, B., Cates, G., Crabb, D., Day, D., Gnanvo, K., Keller, D., Liyanage, N., Nelyubin, V. V., Nguyen, H., Norum, B., Paschke, K., Sulkosky, V., Zhang, J., Zheng, X., Birchall, J., Blunden, P., Gericke, M. T. W., Falk, W. R., Lee, L., Mammei, J., Page, S. A., van Oers, W. T. H., Dehmelt, K., Deshpande, A., Feege, N., Hemmick, T. K., Kumar, K. S., Kutz, T., Miskimen, R., Ramsey-Musolf, M. J., Riordan, S., Saylor, N. Hirlinger, Bessuille, J., Ihloff, E., Kelsey, J., Kowalski, S., Silwal, R., De Cataldo, G., De Leo, R., Di Bari, D., Lagamba, L., Bellini, E. NappiV., Mammoliti, F., Noto, F., Sperduto, M. L., Sutera, C. M., Cole, P., Forest, T. A., Khandekar, M., McNulty, D., Aulenbacher, K., Baunack, S., Maas, F., Tioukine, V., Gilman, R., Myers, K., Ransome, R., Tadepalli, A., Beniniwattha, R., Holmes, R., Souder, P., Armstrong, D. S., Averett, T. D., Deconinck, W., Duvall, W., Lee, A., Pitt, M. L., Dunne, J. A., Dutta, D., Fassi, L. El, De Persio, F., Meddi, F., Urciuoli, G. M., Cisbani, E., Fanelli, C., Garibaldi, F., Johnston, K., Simicevic, N., Wells, S., King, P. M., Roche, J., Arrington, J., Reimer, P. E., Franklin, G., Quinn, B., Ahmidouch, A., Danagoulian, S., Glamazdin, O., Pomatsalyuk, R., Mammei, R., Martin, J. W., Holmstrom, T., Erler, J., Kolomensky, Yu. G., Napolitano, J., Aniol, K. A., Ramsay, W. D., Korkmaz, E., Spayde, D. T., Benmokhtar, F., Del Dotto, A., Perrino, R., Barkanova, S., Aleksejevs, A., and Singh, J.
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High Energy Physics - Phenomenology ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,Nuclear Experiment - Abstract
The physics case and an experimental overview of the MOLLER (Measurement Of a Lepton Lepton Electroweak Reaction) experiment at the 12 GeV upgraded Jefferson Lab are presented. A highlight of the Fundamental Symmetries subfield of the 2007 NSAC Long Range Plan was the SLAC E158 measurement of the parity-violating asymmetry $A_{PV}$ in polarized electron-electron (M{\o}ller) scattering. The proposed MOLLER experiment will improve on this result by a factor of five, yielding the most precise measurement of the weak mixing angle at low or high energy anticipated over the next decade. This new result would be sensitive to the interference of the electromagnetic amplitude with new neutral current amplitudes as weak as $\sim 10^{-3}\cdot G_F$ from as yet undiscovered dynamics beyond the Standard Model. The resulting discovery reach is unmatched by any proposed experiment measuring a flavor- and CP-conserving process over the next decade, and yields a unique window to new physics at MeV and multi-TeV scales, complementary to direct searches at high energy colliders such as the Large Hadron Collider (LHC). The experiment takes advantage of the unique opportunity provided by the upgraded electron beam energy, luminosity, and stability at Jefferson Laboratory and the extensive experience accumulated in the community after a round of recent successfully completed parity-violating electron scattering experiments
- Published
- 2014
27. Single Spin Asymmetries in Charged Kaon Production from Semi-Inclusive Deep Inelastic Scattering on a Transversely Polarized $^3{\rm{He}}$ Target
- Author
-
Zhao, Y. X., Wang, Y., Allada, K., Aniol, K., Annand, J. R. M., Averett, T., Benmokhtar, F., Bertozzi, W., Bradshaw, P. C., Bosted, P., Camsonne, A., Canan, M., Cates, G. D., Chen, C., Chen, J. -P., Chen, W., Chirapatpimol, K., Chudakov, E., Cisbani, E., Cornejo, J. C., Cusanno, F., Dalton, M. M., Deconinck, W., de Jager, C. W., De Leo, R., Deng, X., Deur, A., Ding, H., Dolph, P. A. M., Dutta, C., Dutta, D., Fassi, L. El, Frullani, S., Gao, H., Garibaldi, F., Gaskell, D., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Guo, L., Hamilton, D., Hansen, O., Higinbotham, D. W., Holmstrom, T., Huang, J., Huang, M., Ibrahim, H. F, Iodice, M., Jiang, X., Jin, G., Jones, M. K., Katich, J., Kelleher, A., Kim, W., Kolarkar, A., Korsch, W., LeRose, J. J., Li, X., Li, Y., Lindgren, R., Liyanage, N., Long, E., Lu, H. -J., Margaziotis, D. J., Markowitz, P., Marrone, S., McNulty, D., Meziani, Z. -E., Michaels, R., Moffit, B., Camacho, C. Mu��oz, Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Oh, Y., Osipenko, M., Parno, D., Peng, J. -C., Phillips, S. K., Posik, M., Puckett, A. J. R., Qian, X., Qiang, Y., Rakhman, A., Ransome, R., Riordan, S., Saha, A., Sawatzky, B., Schulte, E., Shahinyan, A., Shabestari, M. H., ��irca, S., Stepanyan, S., Subedi, R., Sulkosky, V., Tang, L. -G., Tobias, A., Urciuoli, G. M., Vilardi, I., Wang, K., Wojtsekhowski, B., Yan, X., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y., Zhang, Y. -W., Zhao, B., Zheng, X., Zhu, L., Zhu, X., and Zong, X.
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FOS: Physical sciences ,High Energy Physics::Experiment ,Nuclear Experiment (nucl-ex) ,Nuclear Experiment - Abstract
We report the first measurement of target single spin asymmetries of charged kaons produced in semi-inclusive deep inelastic scattering of electrons off a transversely polarized $^3{\rm{He}}$ target. Both the Collins and Sivers moments, which are related to the nucleon transversity and Sivers distributions, respectively, are extracted over the kinematic range of 0.1$, Comment: 6 pages, 3 figures
- Published
- 2014
28. A Precision Measurement of the Neutron Twist-3 Matrix Element $d_2^n$: Probing Color Forces
- Author
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Posik, M., Flay, D., Parno, D. S., Allada, K., Armstrong, W., Averett, T., Benmokhtar, F., Bertozzi, W., Camsonne, A., Canan, M., Cates, G. D., Chen, C., Chen, J. -P., Choi, S., Chudakov, E., Cusanno, F., Dalton, M. M., Deconinck, W., de Jager, C. W., Deng, X., Deur, A., Dutta, C., Fassi, L. El, Franklin, G. B., Friend, M., Gao, H., Garibaldi, F., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Gomez, J., Guo, L., Hansen, O., Higinbotham, D. W., Holmstrom, T., Huang, J., Hyde, C., Ibrahim, H. F., Jiang, X., Jin, G., Katich, J., Kelleher, A., Kolarkar, A., Korsch, W., Kumbartzki, G., LeRose, J. J., Lindgren, R., Liyanage, N., Long, E., Lukhanin, A., Mamyan, V., McNulty, D., Meziani, Z. -E., Michaels, R., Mihovilovi��, M., Moffit, B., Muangma, N., Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Nuruzzaman, Oh, Y., Peng, J. C., Qian, X., Qiang, Y., Rakhman, A., Riordan, S., Saha, A., Sawatzky, B., Shabestari, M. H., Shahinyan, A., ��irca, S., Solvignon, P., Subedi, R., Sulkosky, V., Tobias, W. A., Troth, W., Wang, D., Wang, Y., Wojtsekhowski, B., Yan, X., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y., Zhang, Y. -W., Zhao, B., and Zheng, X.
- Subjects
FOS: Physical sciences ,High Energy Physics::Experiment ,Nuclear Experiment (nucl-ex) ,Nuclear Experiment - Abstract
Double-spin asymmetries and absolute cross sections were measured at large Bjorken $x$ (0.25 $ \le x \le $ 0.90), in both the deep-inelastic and resonance regions, by scattering longitudinally polarized electrons at beam energies of 4.7 and 5.9 GeV from a transversely and longitudinally polarized $^3$He target. In this dedicated experiment, the spin structure function $g_2$ on $^3$He was determined with precision at large $x$, and the neutron twist-three matrix element $d_2^n$ was measured at $\left< Q^2\right>$ of 3.21 and 4.32 GeV$^2$/$c^2$, with an absolute precision of about $10^{-5}$. Our results are found to be in agreement with lattice QCD calculations and resolve the disagreement found with previous data at $\left< Q^2\right> =$ 5 GeV$^2$/$c^2$. Combining $d_2^n$ and a newly extracted twist-four matrix element, $f_2^n$, the average neutron color electric and magnetic forces were extracted and found to be of opposite sign and about 30 MeV/fm in magnitude., Corrected a typo in the author list and Figure 1 legend. 6 pages, 2 figures, 2 tables
- Published
- 2014
29. The MOLLER Experiment: An Ultra-Precise Measurement of the Weak Mixing Angle Using Møller Scattering
- Author
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Benesch, MOLLER Collaboration: J., Brindza, P., Carlini, R. D., Chen, J. P., Chudakov, E., Covrig, S., Dalton, M. M., Deur, A., Gaskell, D., Gavalya, A., Gomez, J., Higinbotham, D. W., Keppel, C., Meekins, D., Michaels, R., Moffit, B., Roblin, Y., Suleiman, R., Wines, R., Wojtsekhowski, B., Cates, G., Crabb, D., Day, D., Gnanvo, K., Keller, D., Liyanage, N., Nelyubin, V. V., Nguyen, H., Norum, B., Paschke, K., Sulkosky, V., Zhang, J., Zheng, X., Birchall, J., Blunden, P., Gericke, M. T. W., Falk, W. R., Lee, L., Mammei, J., Page, S. A., van Oers, W. T. H., Dehmelt, K., Deshpande, A., Feege, N., Hemmick, T. K., Kumar, K. S., Kutz, T., Miskimen, R., Ramsey Musolf, M. J., Riordan, S., Hirlinger Saylor, N., Bessuille, J., Ihloff, E., Kelsey, J., Kowalski, S., Silwal, R., De Cataldo, G., De Leo, R., Di Bari, D., Lagamba, L., Nappi, E., Bellini, Vincenzo, Mammoliti, F., Noto, F., Sperduto, M. L., Sutera, C. M., Cole, P., Forest, T. A., Khandekar, M., Mcnulty, D., Aulenbacher, K., Baunack, S., Maas, F., Tioukine, V., Gilman, R., Myers, K., Ransome, R., Tadepalli, A., Beniniwattha, R., Holmes, R., Souder, P., Armstrong, D. S., Averett, T. D., Deconinck, W., Duvall, W., Lee, A., Pitt, M. L., Dunne, J. A., Dutta, D., El Fassi, L., De Persio, F., Meddi, F., Urciuoli, G. M., Cisbani, E., Fanelli, C., Garibaldi, F., Johnston, K., Simicevic, N., Wells, S., King, P. M., Roche, J., Arrington, J., Reimer, P. E., Franklin, G., Quinn, B., Ahmidouch, A., Danagoulian, S., Glamazdin, O., Pomatsalyuk, R., Mammei, R., Martin, J. W., Holmstrom, T., Erler, J., Kolomensky, Y. u. G., Napolitano, J., Aniol, K. A., Ramsay, W. D., Korkmaz, E., Spayde, D. T., Benmokhtar, F., Del Dotto, A., Perrino, R., Barkanova, S., Aleksejevs, A., and Singh, J.
- Published
- 2014
30. Measurement of the Target-Normal Single-Spin Asymmetry in Deep-Inelastic Scattering from the Reaction $^{3}\mathrm{He}^{\uparrow}(e,e')X$
- Author
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Katich, J., Qian, X., Zhao, Y. X., Allada, K., Aniol, K., Annand, J. R. M., Averett, T., Benmokhtar, F., Bertozzi, W., Bradshaw, P. C., Bosted, P., Camsonne, A., Canan, M., Cates, G. D., Chen, C., Chen, J. -P., Chen, W., Chirapatpimol, K., Chudakov, E., Cisbani, E., Cornejo, J. C., Cusanno, F., Dalton, M. M., Deconinck, W., de Jager, C. W., De Leo, R., Deng, X., Deur, A., Ding, H., Dolph, P. A. M., Dutta, C., Dutta, D., Fassi, L. El, Frullani, S., Gao, H., Garibaldi, F., Gaskell, D., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Guo, L., Hamilton, D., Hansen, O., Higinbotham, D. W., Holmstrom, T., Huang, J., Huang, M., Ibrahim, H. F., Iodice, M., Jiang, X., Jin, G., Jones, M. K., Kelleher, A., Kim, W., Kolarkar, A., Korsch, W., LeRose, J. J., Li, X., Li, Y., Lindgren, R., Liyanage, N., Long, E., Lu, H. -J., Margaziotis, D. J., Markowitz, P., Marrone, S., McNulty, D., Meziani, Z. -E., Michaels, R., Moffit, B., Camacho, C. Mu��oz, Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Oh, Y., Osipenko, M., Parno, D., Peng, J. C., Phillips, S. K., Posik, M., Puckett, A. J. R., Qiang, Y., Rakhman, A., Ransome, R. D., Riordan, S., Saha, A., Sawatzky, B., Schulte, E., Shahinyan, A., Shabestari, M. H., ��irca, S., Stepanyan, S., Subedi, R., Sulkosky, V., Tang, L. -G., Tobias, A., Urciuoli, G. M., Vilardi, I., Wang, K., Wang, Y., Wojtsekhowski, B., Yan, X., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y., Zhang, Y. -W., Zhao, B., Zheng, X., Zhu, L., Zhu, X., and Zong, X.
- Subjects
FOS: Physical sciences ,High Energy Physics::Experiment ,Nuclear Experiment (nucl-ex) ,Nuclear Experiment - Abstract
We report the first measurement of the target-normal single-spin asymmetry in deep-inelastic scattering from the inclusive reaction $^3$He$^{\uparrow}\left(e,e' \right)X$ on a polarized $^3$He gas target. Assuming time-reversal invariance, this asymmetry is strictly zero in the Born approximation but can be non-zero if two-photon-exchange contributions are included. The experiment, conducted at Jefferson Lab using a 5.89 GeV electron beam, covers a range of $1.7 < W < 2.9$ GeV, $1.02$ GeV, which is non-zero at the $2.89\sigma$ level. Our measured asymmetry agrees both in sign and magnitude with a two-photon-exchange model prediction that uses input from the Sivers transverse momentum distribution obtained from semi-inclusive deep-inelastic scattering., Comment: This is the final edited version as published in PRL
- Published
- 2013
31. Measurement of the Parity-Violating Asymmetry in Electron-Deuteron Scattering in the Nucleon Resonance Region
- Author
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Wang, D., Pan, K., Subedi, R., Deng, X., Ahmed, Z., Allada, K., Anio, K. A., Armstrong, D. S., Arrington, J., Bellini, Vincenzo, Beminiwattha, R., Benesch, J., Benmokhtar, F., Bertozzi, W., Camsonne, A., Canan, M., Cates, G. D., Chen, J. P., Chudakov, E., Cisbani, E., Dalton, M. M., de Jager, C. W., De Leo, R., Deconinck, W., Deur, A., Dutta, C., Fassi, L. E., Erler, J., Flay, D., Franklin, G. B., Friend, M., Frullani, S., Hyde, C. E., Jen, C. M., Jones, D., Hoyoung, Kang, King, P. M., Kowalski, S., Kumar, K. S., Lee, J. H., Lerose, J. J., Liyanage, N., Long, E., Mcnulty, D., Margaziotis, D. J., Meddi, F., Meekins, D. G., Mercado, L., Meziani, Z. E., Michaels, R., Mihovilovic, M., Muangma, N., Myers, K. E., Nanda, S., Narayan, A., Nelyubin, V., Nuruzzaman, Oh, Y., Parno, D., Paschke, K. D., Phillips, S. K., Qian, X., Qiang, Y., Quinn, B., Rakhman, A., Reimer, P. E., Rider, K., Riordan, S., Roche, J., Rubin, J., Russo, Giuseppe, Saenboonruang, K., Saha, A., Sawatzky, B., Shahinyan, A., Silwa, R., Sirca, S., Souder, P. A., Suleiman, R., Sulkosky, V., Sutera, C. M., Tobias, W. A., Urciuoli, G. M., Waidyawansa, B., Wojtsekhowski, B., Ye, L., Zhao, B., Garibaldi, X. Zheng F., Gilad, S., Giusa, A., Glamazdin, A., Golge, S., Grimm, K., Hafidi, K., Hansen, J. O., Higinbotham, D. W., Holmes, R., Holmstrom, T., Holt, R. J., and Huang, J.
- Published
- 2013
32. Weak charge form factor and radius of 208Pb through parity violation in electron scattering
- Author
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Horowitz, C. J., Ahmed, Z., Jen, C. -M., Rakhman, A., Souder, P. A., Dalton, M. M., Liyanage, N., Paschke, K. D., Saenboonruang, K., Silwal, R., Franklin, G. B., Friend, M., Quinn, B., Kumar, K. S., Mammei, J. M., McNulty, D., Mercado, L., Riordan, S., Wexler, J., Michaels, R. W., and Urciuoli, G. M.
- Subjects
Physics ,Quark ,Nuclear and High Energy Physics ,Strange quark ,Proton ,Nuclear Theory ,media_common.quotation_subject ,FOS: Physical sciences ,Charge density ,Parity (physics) ,Asymmetry ,Nuclear Theory (nucl-th) ,Nuclear physics ,Charge radius ,High Energy Physics::Experiment ,Astrophysics::Earth and Planetary Astrophysics ,Nuclear Experiment (nucl-ex) ,Nucleon ,Nuclear Experiment ,media_common - Abstract
We use distorted wave electron scattering calculations to extract the weak charge form factor F_W(q), the weak charge radius R_W, and the point neutron radius R_n, of 208Pb from the PREX parity violating asymmetry measurement. The form factor is the Fourier transform of the weak charge density at the average momentum transfer q=0.475 fm$^{-1}$. We find F_W(q) =0.204 \pm 0.028 (exp) \pm 0.001 (model). We use the Helm model to infer the weak radius from F_W(q). We find R_W= 5.826 \pm 0.181 (exp) \pm 0.027 (model) fm. Here the exp error includes PREX statistical and systematic errors, while the model error describes the uncertainty in R_W from uncertainties in the surface thickness \sigma of the weak charge density. The weak radius is larger than the charge radius, implying a "weak charge skin" where the surface region is relatively enriched in weak charges compared to (electromagnetic) charges. We extract the point neutron radius R_n=5.751 \pm 0.175 (exp) \pm 0.026 (model) \pm 0.005 (strange) fm$, from R_W. Here there is only a very small error (strange) from possible strange quark contributions. We find R_n to be slightly smaller than R_W because of the nucleon's size. Finally, we find a neutron skin thickness of R_n-R_p=0.302\pm 0.175 (exp) \pm 0.026 (model) \pm 0.005 (strange) fm, where R_p is the point proton radius., Comment: 5 pages, 1 figure, published in Phys Rev. C. Only one change in this version: we have added one author, also to metadata
- Published
- 2012
33. Measurement of the Neutron Radius of Pb-208 through Parity Violation in Electron Scattering
- Author
-
Abrahamyan, S, Ahmed, Z, Albataineh, H, Aniol, K, Armstrong, Ds, Armstrong, W, Averett, T, Babineau, B, Barbieri, A, Bellini, Vincenzo, Beminiwattha, R, Benesch, J, Benmokhtar, F, Bielarski, T, Boeglin, W, Camsonne, A, Canan, M, Carter, P, Cates, Gd, Chen, C, Chen, Jp, Hen, O, Cusanno, F, Dalton, Mm, De, Le, R, de Jager, K, Deconinck, W, Decowski, P, Deng, X, Deur, A, Dutta, D, Etile, A, Flay, D, Franklin, Gb, Friend, M, Frullani, S, Fuchey, E, Garibaldi, F, Gasser, E, Gilman, R, Giusa, A, Glamazdin, A, Gomez, J, Grames, J, Gu, C, Hansen, O, Hansknecht, J, Higinbotham, Dw, Holmes, Rs, Holmstrom, T, Horowitz, Cj, Hoskins, J, Huang, J, Hyde, Ce, Itard, F, Jen, Cm, Jensen, E, Jin, G, Johnston, S, Kelleher, A, Kliakhandler, K, King, Pm, Kowalski, S, Kumar, Ks, Leacock, J, Leckey, J, Lee, Jh, Lerose, Jj, Lindgren, R, Liyanage, N, Lubinsky, N, Mammei, J, Mammoliti, Francesco, Margaziotis, Dj, Markowitz, P, Mccreary, A, Mcnulty, D, Mercado, L, Meziani, Ze, Michaels, Rw, Mihovilovic, M, Muangma, N, Munoz Camacho, C, Nanda, S, Nelyubin, V, Nuruzzaman, N, Oh, Y, Palmer, A, Parno, D, Paschke, Kd, Phillips, Sk, Poelker, B, Pomatsalyuk, R, Posik, M, Puckett, Ajr, Quinn, B, Rakhman, A, Reimer, Pe, Riordan, S, Rogan, P, Ron, G, Russo, Giuseppe, Saenboonruang, K, Saha, A, Sawatzky, B, Shahinyan, A, Silwal, R, Sirca, S, Slifer, K, Solvignon, P, Souder, Pa, Sperduto, Ml, Subedi, R, Suleiman, R, Sulkosky, V, Sutera, CONCETTA MARIA, Tobias, Wa, Troth, W, Urciuoli, Gm, Waidyawansa, B, Wang, D, Wexler, J, Wilson, R, Wojtsekhowski, B, Yan, X, Yao, H, Ye, Y, Ye, Z, Yim, V, Zana, L, Zhan, X, Zhang, J, Zhang, Y, Zheng, X, and PREX Collaboration, Zhu P.
- Subjects
ELECTRON-SCATTERING ,NUCLEI ,DENSITIES - Published
- 2012
34. Beam-Target Double Spin Asymmetry A_LT in Charged Pion Production from Deep Inelastic Scattering on a Transversely Polarized He-3 Target at 1.4
- Author
-
Huang, J., Allada, K., Dutta, C., Katich, J., Qian, X., Wang, Y., Zhang, Y., Aniol, K., Annand, J. R. M., Averett, T., Benmokhtar, F., Bertozzi, W., Bradshaw, P. C., Bosted, P., Camsonne, A., Canan, M., Cates, G. D., Chen, C., Chen, J. -P., Chen, W., Chirapatpimol, K., Chudakov, E., Cisbani, E., Cornejo, J. C., Cusanno, F., Dalton, M. M., Deconinck, W., de Jager, C. W., De Leo, R., Deng, X., Deur, A., Ding, H., Dolph, P. A. M., Dutta, D., Fassi, L. El, Frullani, S., Gao, H., Garibaldi, F., Gaskell, D., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Guo, L., Hamilton, D., Hansen, O., Higinbotham, D. W., Holmstrom, T., Huang, M., Ibrahim, H. F., Iodice, M., Jiang, X., Jin, G., Jones, M. K., Kelleher, A., Kim, W., Kolarkar, A., Korsch, W., LeRose, J. J., Li, X., Li, Y., Lindgren, R., Liyanage, N., Long, E., Lu, H. -J., Margaziotis, D. J., Markowitz, P., Marrone, S., McNulty, D., Meziani, Z. -E., Michaels, R., Moffit, B., Camacho, C. Mu��oz, Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Oh, Y., Osipenko, M., Parno, D., Peng, J. C., Phillips, S. K., Posik, M., Puckett, A. J. R., Qiang, Y., Rakhman, A., Ransome, R. D., Riordan, S., Saha, A., Sawatzky, B., Schulte, E., Shahinyan, A., Shabestari, M. H., ��irca, S., Stepanyan, S., Subedi, R., Sulkosky, V., Tang, L. -G., Tobias, A., Urciuoli, G. M., Vilardi, I., Wang, K., Wojtsekhowski, B., Yan, X., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y. -W., Zhao, B., Zheng, X., Zhu, L., Zhu, X., Zong, X., Laboratoire de Physique Corpusculaire - Clermont-Ferrand (LPC), Université Blaise Pascal - Clermont-Ferrand 2 (UBP)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), and HALL A
- Subjects
High Energy Physics - Experiment (hep-ex) ,High Energy Physics::Lattice ,Nuclear Theory ,Mathematics::Classical Analysis and ODEs ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,FOS: Physical sciences ,High Energy Physics::Experiment ,Nuclear Experiment (nucl-ex) ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,Nuclear Experiment - Abstract
We report the first measurement of the double-spin asymmetry $A_{LT}$ for charged pion electroproduction in semi\nobreakdash-inclusive deep\nobreakdash-inelastic electron scattering on a transversely polarized $^{3}$He target. The kinematics focused on the valence quark region, $0.16, 6 pages, 2 figures, 1 tables, published in PRL
- Published
- 2012
35. Beam-Target Double Spin Asymmetry A_LT in Charged Pion Production from Deep Inelastic Scattering on a Transversely Polarized He-3 Target at 1.4<Q^2<2.7 GeV^2
- Author
-
Huang, J., Allada, K., Dutta, C., Katich, J., Qian, X., Wang, Y., Zhang, Y., Aniol, K., Annand, J. R. M., Averett, T., Benmokhtar, F., Bertozzi, W., Bradshaw, P. C., Bosted, P., Camsonne, A., Canan, M., Cates, G. D., Chen, C., Chen, J. -P., Chen, W., Chirapatpimol, K., Chudakov, E., Cisbani, E., Cornejo, J. C., Cusanno, F., Dalton, M. M., Deconinck, W., de Jager, C. W., De Leo, R., Deng, X., Deur, A., Ding, H., Dolph, P. A. M., Dutta, D., Fassi, L. El, Frullani, S., Gao, H., Garibaldi, F., Gaskell, D., Gilad, S., Gilman, R., Glamazdin, O., Golge, S., Guo, L., Hamilton, D., Hansen, O., Higinbotham, D. W., Holmstrom, T., Huang, M., Ibrahim, H. F., Iodice, M., Jiang, X., Jin, G., Jones, M. K., Kelleher, A., Kim, W., Kolarkar, A., Korsch, W., LeRose, J. J., Li, X., Li, Y., Lindgren, R., Liyanage, N., Long, E., Lu, H. -J., Margaziotis, D. J., Markowitz, P., Marrone, S., McNulty, D., Meziani, Z. -E., Michaels, R., Moffit, B., Camacho, C. Muñoz, Nanda, S., Narayan, A., Nelyubin, V., Norum, B., Oh, Y., Osipenko, M., Parno, D., Peng, J. C., Phillips, S. K., Posik, M., Puckett, A. J. R., Qiang, Y., Rakhman, A., Ransome, R. D., Riordan, S., Saha, A., Sawatzky, B., Schulte, E., Shahinyan, A., Shabestari, M. H., Širca, S., Stepanyan, S., Subedi, R., Sulkosky, V., Tang, L. -G., Tobias, A., Urciuoli, G. M., Vilardi, I., Wang, K., Wojtsekhowski, B., Yan, X., Yao, H., Ye, Y., Ye, Z., Yuan, L., Zhan, X., Zhang, Y. -W., Zhao, B., Zheng, X., Zhu, L., Zhu, X., and Zong, X.
- Subjects
High Energy Physics::Experiment ,Nuclear Experiment ,High Energy Physics - Experiment - Abstract
We report the first measurement of the double-spin asymmetry $A_{LT}$ for charged pion electroproduction in semi\nobreakdash-inclusive deep\nobreakdash-inelastic electron scattering on a transversely polarized $^{3}$He target. The kinematics focused on the valence quark region, $0.16, Comment: 6 pages, 2 figures, 1 tables, published in PRL
- Published
- 2011
36. Expression, purification, and crystallization of the Escherichia coli selenomethionyl beta-ketoacyl-acyl carrier protein synthase III
- Author
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Khandekar, S. S., Konstantinidis, A. K., Silverman, C., Janson, C. A., McNulty, D. E., Nwagwu, S., Van Aller, G. S., Doyle, M. L., Kane, J. F., Qiu, X., and Lonsdale, J.
- Subjects
Circular Dichroism ,Chromatography, Gel ,Recombinant Proteins/biosynthesis/chemistry ,Escherichia coli/*enzymology/genetics ,Crystallization ,Acetyl Coenzyme A/*chemistry ,3-Oxoacyl-(Acyl-Carrier-Protein) Synthase/biosynthesis/*chemistry/genetics ,Mass Spectrometry ,Selenomethionine/*chemistry/metabolism - Abstract
Bacterial beta-ketoacyl-acyl carrier protein (ACP) synthase III (KAS III, also called FabH) catalyzes the condensation and transacylation of acetyl-CoA with malonyl-ACP. In order to understand the mode of enzyme/substrate interaction and design small molecule inhibitors, we have expressed, purified, and crystallized a selenomethionyl-derivative of E. coli KAS III. Several lines of evidence confirmed that purified selenomethionyl KAS III was homogenous, stably folded, and enzymatically active. Dynamic light scattering, size exclusion chromatography, and mass spectrometry results indicated that selenomethionyl KAS III is a noncovalent homodimer. Diffraction quality crystals of selenomethionyl KAS III/acetyl-CoA complex, which grew overnight to a size of 0.2 mm(3), belonged to the tetragonal space group P4(1)2(1)2. Biochem Biophys Res Commun
- Published
- 2000
37. Polycrystalline Vanadium Oxide Nanorods: Growth, Structure and Improved Electrochemical Response as a Li-Ion Battery Cathode Material.
- Author
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McNulty, D., Buckley, D. N., and O'Dwyer, C.
- Subjects
AMINES ,ELECTRIC properties of vanadium oxide ,LITHIUM-ion batteries -- Design & construction ,ELECTRIC capacity ,BATTERY additives - Abstract
Thermally removing amine molecules that serve as chemical templates for vanadium oxide nanotubes is demonstrated to significantly improve the performance when tested as a cathode material in Li-ion battery cells. Capacity fading issues associated with blocked intercalation sites on the (010) faces of layered vanadium oxide that form the nanotubes are prevented. Thermal treatment of the nanotubes up to 600°C is shown to cause a specific conversion from nanotubes to polycrystalline nanorods and removal of the organic template. The conversion process was monitored by thermogravimetric analysis, X-ray diffraction, transmission electron microscopy and infra-red spectroscopy. In a potential window of 4.0-1.2 V drawing 30 µA (C/30), the nanorods show improved specific capacities of ~280 mAh g
-1 with a modest 6% capacity fade compared to ~8 mAh g-1 with 62% capacity fade for the VONTs. The improvements in specific capacity and cycling performance are due to the successful removal of amine molecules and conversion to nanorods containing nanoscale crystals. The cathode material also demonstrated enhanced energy densities (~700 W h kg-1 ) compared to composites of the same overall weight, without conductive carbon additives or polymeric binders. [ABSTRACT FROM AUTHOR]- Published
- 2014
- Full Text
- View/download PDF
38. Accommodating Curvaturein a Highly Ordered FunctionalizedMetal Oxide Nanofiber: Synthesis, Characterization, and MultiscaleModeling of Layered Nanosheets.
- Author
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O’Dwyer, C., Gannon, G., McNulty, D., Buckley, D. N., and Thompson, D.
- Published
- 2012
- Full Text
- View/download PDF
39. Observations of lameness, hoof conformation and development of lesions in dairy cattle over four lactations.
- Author
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Offer, J. E., Logue, D. N., and McNulty, D.
- Abstract
Lameness and lesions in the claws of 31 autumn-calving Holstein Friesian dairy cows were recorded from before their first-calving until their fifth lactation. The animals were managed by the same herdsman and housed adjacently in the same building in one of two herds grazed either on clover-rich pastures (herd 1) or on conventional ryegrass (herd 2). All four hooves were examined routinely four times during each lactation, and claw lesions were scored for severity and drawn on hoof maps. Heel erosion and infectious skin conditions of the hoof were also recorded, and hoof conformation, hardness, and growth and wear were measured. The animals' locomotion was scored weekly throughout the winter housing period and any observed to be lame were examined to determine the cause. The development of lesions was modelled by using hierarchic smoothing splines. There was no significant effect of herd except on the prevalence of lameness in lactation 2 when the incidence of (inter)digital dermatitis was higher in herd 2. Lesion and locomotion scores were significantly higher by lactation 4 (P<0.05). There were significant effects (P<0.05) of weeks postcalving on lesion formation, claw conformation, and heel erosion. [ABSTRACT FROM PUBLISHER]
- Published
- 2000
- Full Text
- View/download PDF
40. VERTICILLIUM LECANII. ALLERGOLOGICAL AND TOXICOLOGICAL STUDIES ON WORK EXPOSED PERSONNEL.
- Author
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EATON, K. K., HENNESSY, T. J., SNODIN, D. J., and MCNULTY, D. W.
- Abstract
The fungus (V.1.) has been developed as a pesticide at two research centres, Tate & Lyle (T & L) and Glasshouse Crops Research Institute (GCRI) and staff at both locations have been screened for atopic status and sensitization to V.1 The majority of staff at T & L had full medical examination, respiratory testing, chest X-ray and full blood profile. In total 141 staff were skin tested for allergy: eight showed positive tests to V.l., four at GCRI and four at T & L; seven of these were allergic and one non-allergic, non atopic. Sensitization was not well correlated with heavy exposure. None were aware of symptoms handling V.l. and all responses were less than histamine control. Testing with two isolates of V.1, Ve2 and Ve6, revealed that the major allergens are in Ve2. The 85 T & L staff completing medical tests recorded revealed no abnormalities. All X-rays were normal. The normal variability of respiratory function was not altered by exposure. Immunoglobulins varied with allergic state but did not differ significantly between exposed and unexposed groups. There was no toxic effect on blood parameters following exposure to V.l. [ABSTRACT FROM PUBLISHER]
- Published
- 1986
41. Beyond night float? The impact of call structure on internal medicine residents.
- Author
-
Rosenberg, M and McNulty, D
- Abstract
Limitation of resident working hours has been a critical issue for training programs in recent years. At Providence Medical Center, residents and faculty collaborated in developing goals, implementation strategies, and an evaluation process for a new ward float system. The goals of the float system were to reduce fatigue, facilitate education, maintain continuity of care, and minimize the negative impact of training on residents' personal lives. Evaluation revealed: 1) 74% of the residents preferred Providence Medical Center float system (PMCF) to either night float (NF) (13%) or standard every-fourth-night call (EFNC) (13%); and 2) PMCF was perceived to ensure quality patient care to a greater degree than was NF, to better facilitate resident education than was NF, and to have a less negative impact on personal lives than was EFNC. [ABSTRACT FROM AUTHOR]
- Published
- 1995
42. Experimental designs for studying the influence of the raw milk flora on cheese characteristics: a review.
- Author
-
BACHMANN, H P, McNULTY, D A, McSWEENEY, P L H, and RÜEGG, M
- Published
- 1996
- Full Text
- View/download PDF
43. Comparison of allergenic extracts using micro-isoelectric focusing.
- Author
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Williams, S. E., McNulty, D. W., Deavin, J. C., Bark, L. S., Kershaw, L., Mason, B., Tranter, J., Goldberg, V., Ratnaraj, N., Elyas, A., Lascelles, P. T., and Dybowski, R.
- Published
- 1981
- Full Text
- View/download PDF
44. Plant Availability of Heavy Metals in Soils Previously Amended with Heavy Applications of Sewage Sludge.
- Author
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Hooda, P S, McNulty, D, Alloway, B J, and Aitken, M N
- Published
- 1997
- Full Text
- View/download PDF
45. Winter avalanche activity and weather in a Canterbury alpine basin.
- Author
-
McNulty, D. and Fitzharris, B. B.
- Published
- 1980
- Full Text
- View/download PDF
46. Letter to the Editor.
- Author
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Eaton, K. K., Auld, R. M., and McNulty, D. W.
- Published
- 1980
- Full Text
- View/download PDF
47. PROGRESS REPORT ON THE π0 LIFETIME EXPERIMENT (PRIMEX) AT JLAB.
- Author
-
McNULTY, D. E.
- Subjects
PHOTONS ,CHIRAL perturbation theory ,CHIRALITY of nuclear particles ,QUANTUM chromodynamics ,PIONS - Published
- 2007
48. Small sets of complementary observables.
- Author
-
Grassl, M., McNulty, D., Mišta Jr., L., and Paterek, T.
- Subjects
- *
QUANTUM mechanics , *TOPOLOGY - Abstract
Two observables are called complementary if preparing a physical object in an eigenstate of one of them yields a completely random result in a measurement of the other. We investigate small sets of complementary observables that cannot be extended by yet another complementary observable. We construct explicit examples of unextendible sets up to dimension 16 and conjecture certain small sets to be unextendible in higher dimensions. Our constructions provide three complementary measurements, only one observable away from the ultimate minimum of two. Almost all our examples in finite dimensions are useful for discriminating pure states from some mixed states, and they help to shed light on the complex topology of the Bloch space of higher-dimensional quantum systems. [ABSTRACT FROM AUTHOR]
- Published
- 2017
- Full Text
- View/download PDF
49. 025 NATIONAL ADMINISTRATIVE DATA PRODUCES A VERY ACCURATE RISK PREDICTION MODEL FOR SHORT- AND LONG-TERM MORTALITY FOLLOWING CARDIAC SURGERY.
- Author
-
Aktuerk, D., Mcnulty, D., Barnett, V., Freemantle, N., Ray, D., and Pagano, D.
- Published
- 2014
- Full Text
- View/download PDF
50. PO-1786 Exploratory analysis of anatomical regions associated with Dysphagia measured with the MDADI.
- Author
-
Carver, A., Hartley, A., Mcnulty, D., and Mehanna, H.
- Subjects
- *
DEGLUTITION disorders , *MEASUREMENT - Published
- 2022
- Full Text
- View/download PDF
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