21 results on '"Mougeot, X."'
Search Results
2. Measurements and computational analysis of the natural decay of Lu176
- Author
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Quarati, F. G. A., primary, Bollen, G., additional, Dorenbos, P., additional, Eibach, M., additional, Gulyuz, K., additional, Hamaker, A., additional, Izzo, C., additional, Keblbeck, D. K., additional, Mougeot, X., additional, Puentes, D., additional, Redshaw, M., additional, Ringle, R., additional, Sandler, R., additional, Surbrook, J., additional, and Yandow, I., additional
- Published
- 2023
- Full Text
- View/download PDF
3. Updated evaluation of potential ultralow Q -value β -decay candidates
- Author
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Keblbeck, D. K., primary, Bhandari, R., additional, Gamage, N. D., additional, Horana Gamage, M., additional, Leach, K. G., additional, Mougeot, X., additional, and Redshaw, M., additional
- Published
- 2023
- Full Text
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4. Origin of the Reactor Antineutrino Anomalies in Light of a New Summation Model with Parametrized β− Transitions
- Author
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Letourneau, A., primary, Savu, V., additional, Lhuillier, D., additional, Lasserre, T., additional, Materna, T., additional, Mention, G., additional, Mougeot, X., additional, Onillon, A., additional, Perisse, L., additional, and Vivier, M., additional
- Published
- 2023
- Full Text
- View/download PDF
5. Calibration of the liquid argon ionization response to low energy electronic and nuclear recoils with DarkSide-50
- Author
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The DarkSide Collaboration, Agnes, P., Albuquerque, I. F. M., Alexander, T., Alton, A. K., Ave, M., Back, H. O., Batignani, G., Biery, K., Bocci, V., Bonivento, W. M., Bottino, B., Bussino, S., Cadeddu, M., Cadoni, M., Calaprice, F., Caminata, A., Canci, N., Caravati, M., Cariello, M., Carlini, M., Carpinelli, M., Catalanotti, S., Cataudella, V., Cavalcante, P., Cavuoti, S., Chepurnov, A., Cical��, C., Cocco, A. G., Covone, G., D'Angelo, D., Davini, S., De Candia, A., De Cecco, S., De Filippis, G., De Rosa, G., Derbin, A. V., Devoto, A., D'Incecco, M., Dionisi, C., Dordei, F., Downing, M., D'Urso, D., Fiorillo, G., Franco, D., Gabriele, F., Galbiati, C., Ghiano, C., Giganti, C., Giovanetti, G. K., Gorchakov, O., Goretti, A. M., Grobov, A., Gromov, M., Guan, M., Guardincerri, Y., Gulino, M., Hackett, B. R., Herner, K., Hosseini, B., Hubaut, F., Hungerford, E. V., Ianni, An., Ippolito, V., Keeter, K., Kendziora, C. L., Kochanek, I., Korablev, D., Korga, G., Kubankin, A., Kuss, M., La Commara, M., Lai, M., Li, X., Lissia, M., Longo, G., Machulin, I. N., Mapelli, L. P., Mari, S. M., Maricic, J., Martoff, C. J., Messina, A., Meyers, P. D., Milincic, R., Morrocchi, M., Mougeot, X., Muratova, V. N., Musico, P., Agasson, A. Navrer, Nozdrina, A. O., Oleinik, A., Ortica, F., Pagani, L., Pallavicini, M., Pandola, L., Pantic, E., Paoloni, E., Pelczar, K., Pelliccia, N., Picciau, E., Pocar, A., Pordes, S., Poudel, S. S., Pralavorio, P., Ragusa, F., Razeti, M., Razeto, A., Renshaw, A. L., Rescigno, M., Rode, J., Romani, A., Sablone, D., Samoylov, O., Sands, W., Sanfilippo, S., Savarese, C., Schlitzer, B., Semenov, D. A., Shchagin, A., Sheshukov, A., Skorokhvatov, M. D., Smirnov, O., Sotnikov, A., Stracka, S., Suvorov, Y., Tartaglia, R., Testera, G., Tonazzo, A., Unzhakov, E. V., Vishneva, A., Vogelaar, R. B., Wada, M., Wang, H., Wang, Y., Westerdale, S., Wojcik, M. M., Xiao, X., Yang, C., Zuzel, G., Agnes, P., Albuquerque, I. F. M., Alexander, T., Alton, A. K., Ave, M., Back, H. O., Batignani, G., Biery, K., Bocci, V., Bonivento, W. M., Bottino, B., Bussino, S., Cadeddu, M., Cadoni, M., Calaprice, F., Caminata, A., Canci, N., Caravati, M., Cariello, M., Carlini, M., Carpinelli, M., Catalanotti, S., Cataudella, V., Cavalcante, P., Cavuoti, S., Chepurnov, A., Cicalò, C., Cocco, A. G., Covone, G., D’Angelo, D., Davini, S., De Candia, A., De Cecco, S., De Filippis, G., De Rosa, G., Derbin, A. V., Devoto, A., D’Incecco, M., Dionisi, C., Dordei, F., Downing, M., D’Urso, D., Fiorillo, G., Franco, D., Gabriele, F., Galbiati, C., Ghiano, C., Giganti, C., Giovanetti, G. K., Gorchakov, O., Goretti, A. M., Grobov, A., Gromov, M., Guan, M., Guardincerri, Y., Gulino, M., Hackett, B. R., Herner, K., Hosseini, B., Hubaut, F., Hungerford, E. V., Ianni, An., Ippolito, V., Keeter, K., Kendziora, C. L., Kochanek, I., Korablev, D., Korga, G., Kubankin, A., Kuss, M., La Commara, M., Lai, M., Li, X., Lissia, M., Longo, G., Machulin, I. N., Mapelli, L. P., Mari, S. M., Maricic, J., Martoff, C. J., Messina, A., Meyers, P. D., Milincic, R., Morrocchi, M., Mougeot, X., Muratova, V. N., Musico, P., Navrer Agasson, A., Nozdrina, A. O., Oleinik, A., Ortica, F., Pagani, L., Pallavicini, M., Pandola, L., Pantic, E., Paoloni, E., Pelczar, K., Pelliccia, N., Picciau, E., Pocar, A., Pordes, S., Poudel, S. S., Pralavorio, P., Ragusa, F., Razeti, M., Razeto, A., Renshaw, A. L., Rescigno, M., Rode, J., Romani, A., Sablone, D., Samoylov, O., Sands, W., Sanfilippo, S., Savarese, C., Schlitzer, B., Semenov, D. A., Shchagin, A., Sheshukov, A., Skorokhvatov, M. D., Smirnov, O., Sotnikov, A., Stracka, S., Suvorov, Y., Tartaglia, R., Testera, G., Tonazzo, A., Unzhakov, E. V., Vishneva, A., Vogelaar, R. B., Wada, M., Wang, H., Wang, Y., Westerdale, S., Wojcik, M. M., Xiao, X., Yang, C., Zuzel, G., University of Houston, Universidade de São Paulo = University of São Paulo (USP), Pacific Northwest National Laboratory (PNNL), Augustana University, Istituto Nazionale di Fisica Nucleare [Pisa] (INFN), Istituto Nazionale di Fisica Nucleare (INFN), Fermi National Accelerator Laboratory (Fermilab), Istituto Nazionale di Fisica Nucleare [Sezione di Roma 1] (INFN), Istituto Nazionale di Fisica Nucleare, Istituto Nazionale di Fisica Nucleare, Sezione di Cagliari (INFN, Sezione di Cagliari), Istituto Nazionale di Fisica Nucleare, Sezione di Genova (INFN, Sezione di Genova), Università degli Studi di Cagliari = University of Cagliari (UniCa), Princeton University, INFN Laboratori Nazionali del Gran Sasso, (INFN), Università degli Studi di Sassari = University of Sassari [Sassari] (UNISS), University of Naples Federico II = Università degli studi di Napoli Federico II, Virginia Tech [Blacksburg], D.V. Skobeltsyn Institute of Nuclear Physics (SINP), Lomonosov Moscow State University (MSU), Istituto Nazionale di Fisica Nucleare, Sezione di Napoli (INFN, Sezione di Napoli), Università degli Studi di Milano = University of Milan (UNIMI), Saint Petersburg Nuclear Physics Institute RAS, St Petersburg Nuclear Physics Institute, University of Massachusetts [Amherst] (UMass Amherst), University of Massachusetts System (UMASS), 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)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité), Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE (UMR_7585)), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), Joint Institute for Nuclear Research (JINR), Institute of Molecular Genetics of National Research Centre «Kurchatov Institute» [Moscow, Russia], Russian Academy of Sciences [Moscow] (RAS), Institute of High Energy Physics [Beijing] (IHEP), Chinese Academy of Sciences [Changchun Branch] (CAS), Università degli Studi di Enna ' KORE ' = Kore University of Enna, Centre de Physique des Particules de Marseille (CPPM), Aix Marseille Université (AMU)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Black Hills State University, Belgorod National Research University, University of California [Los Angeles] (UCLA), University of California (UC), Istituto Nazionale di Fisica Nucleare, Sezione di Roma 3 (INFN, Sezione di Roma 3), University of Hawai'i [Honolulu] (UH), Temple University [Philadelphia], Pennsylvania Commonwealth System of Higher Education (PCSHE), University of Hawai'i [Hilo], Laboratoire National Henri Becquerel (LNHB), Département Métrologie Instrumentation & Information (DM2I), Laboratoire d'Intégration des Systèmes et des Technologies (LIST (CEA)), Direction de Recherche Technologique (CEA) (DRT (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Direction de Recherche Technologique (CEA) (DRT (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Laboratoire d'Intégration des Systèmes et des Technologies (LIST (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Département d'instrumentation Numérique (DIN (CEA-LIST)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA), Belgorod National Research University, 308015 Belgorod, Russia, Università degli Studi di Perugia = University of Perugia (UNIPG), Università degli studi di Genova = University of Genoa (UniGe), Istituto Nazionale di Fisica Nucleare, Sezione di Catania (INFN), Università degli studi di Catania = University of Catania (Unict), University of California [Davis] (UC Davis), Istituto Nazionale di Fisica Nucleare, Sezione di Milano (INFN), Università degli Studi Roma Tre = Roma Tre University (ROMA TRE), Gran Sasso Science Institute (GSSI), Uniwersytet Jagielloński w Krakowie = Jagiellonian University (UJ), DarkSide, ANR-18-IDEX-0001,Université de Paris,Université de Paris(2018), Cicalo, C., D'Angelo, D., D'Incecco, M., D'Urso, D., Ianni, A., Agnes, P, Albuquerque, I, Alexander, T, Alton, A, Ave, M, Back, H, Batignani, G, Biery, K, Bocci, V, Bonivento, W, Bottino, B, Bussino, S, Cadeddu, M, Cadoni, M, Calaprice, F, Caminata, A, Canci, N, Caravati, M, Cariello, M, Carlini, M, Carpinelli, M, Catalanotti, S, Cataudella, V, Cavalcante, P, Cavuoti, S, Chepurnov, A, Cicalo, C, Cocco, A, Covone, G, D'Angelo, D, Davini, S, De Candia, A, De Cecco, S, De Filippis, G, De Rosa, G, Derbin, A, Devoto, A, D'Incecco, M, Dionisi, C, Dordei, F, Downing, M, D'Urso, D, Fiorillo, G, Franco, D, Gabriele, F, Galbiati, C, Ghiano, C, Giganti, C, Giovanetti, G, Gorchakov, O, Goretti, A, Grobov, A, Gromov, M, Guan, M, Guardincerri, Y, Gulino, M, Hackett, B, Herner, K, Hosseini, B, Hubaut, F, Hungerford, E, Ianni, A, Ippolito, V, Keeter, K, Kendziora, C, Kochanek, I, Korablev, D, Korga, G, Kubankin, A, Kuss, M, La Commara, M, Lai, M, Li, X, Lissia, M, Longo, G, Machulin, I, Mapelli, L, Mari, S, Maricic, J, Martoff, C, Messina, A, Meyers, P, Milincic, R, Morrocchi, M, Mougeot, X, Muratova, V, Musico, P, Navrer Agasson, A, Nozdrina, A, Oleinik, A, Ortica, F, Pagani, L, Pallavicini, M, Pandola, L, Pantic, E, Paoloni, E, Pelczar, K, Pelliccia, N, Picciau, E, Pocar, A, Pordes, S, Poudel, S, Pralavorio, P, Ragusa, F, Razeti, M, Razeto, A, Renshaw, A, Rescigno, M, Rode, J, Romani, A, Sablone, D, Samoylov, O, Sands, W, Sanfilippo, S, Savarese, C, Schlitzer, B, Semenov, D, Shchagin, A, Sheshukov, A, Skorokhvatov, M, Smirnov, O, Sotnikov, A, Stracka, S, Suvorov, Y, Tartaglia, R, Testera, G, Tonazzo, A, Unzhakov, E, Vishneva, A, Vogelaar, R, Wada, M, Wang, H, Wang, Y, Westerdale, S, Wojcik, M, Xiao, X, Yang, C, Zuzel, G, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP), and Laboratoire d'Intégration des Systèmes et des Technologies (LIST)
- Subjects
Physics - Instrumentation and Detectors ,Physics::Instrumentation and Detectors ,Electron ,01 natural sciences ,7. Clean energy ,High Energy Physics - Experiment ,electron recoil ,High Energy Physics - Experiment (hep-ex) ,Recoil ,n: irradiation ,electron: recoil ,ionization chamber ,Ionization ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Physics::Atomic Physics ,nucleus recoil ,Nuclear Experiment ,nuclear instrumentation ,nucleus: recoil ,instrumentation ,Physics ,Range (particle radiation) ,irradiation ,Instrumentation and Detectors (physics.ins-det) ,3. Good health ,Projection (relational algebra) ,Astrophysics - Instrumentation and Methods for Astrophysics ,ionizing radiation ,Calibration liquid argon ionization electronic and nuclear recoils dark matter ,ionization: yield ,FOS: Physical sciences ,Electrons ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,DarkSide-50 ,Nuclear physics ,ionization yield ,numerical methods ,0103 physical sciences ,Neutron ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,numerical calculations ,010306 general physics ,Instrumentation and Methods for Astrophysics (astro-ph.IM) ,010308 nuclear & particles physics ,neutrons ,Neutron radiation ,time projection chamber: liquid argon ,calibration ,time projection chamber ,liquid argon ,WIMP: interaction ,WIMP interaction ,Yield (chemistry) - Abstract
DarkSide-50 has demonstrated the high potential of dual-phase liquid argon time projection chambers in exploring interactions of WIMPs in the GeV/c$^2$ mass range. The technique, based on the detection of the ionization signal amplified via electroluminescence in the gas phase, allows to explore recoil energies down to the sub-keV range. We report here on the DarkSide-50 measurement of the ionization yield of electronic recoils down to $\sim$180~eV$_{er}$, exploiting $^{37}$Ar and $^{39}$Ar decays, and extrapolated to a few ionization electrons with the Thomas-Imel box model. Moreover, we present a model-dependent determination of the ionization response to nuclear recoils down to $\sim$500~eV$_{nr}$, the lowest ever achieved in liquid argon, using \textit{in situ} neutron calibration sources and external datasets from neutron beam experiments., Comment: 11 pages, 12 figures, 1 table
- Published
- 2021
6. High-precision measurement of the He6 half-life
- Author
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Kanafani, M., primary, Fléchard, X., additional, Naviliat-Cuncic, O., additional, Chung, G. D., additional, Leblond, S., additional, Liénard, E., additional, Mougeot, X., additional, Quéméner, G., additional, Simancas Di Filippo, A., additional, and Thomas, J.-C., additional
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- 2022
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7. Improved calculations of β decay backgrounds to new physics in liquid xenon detectors
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Haselschwardt, SJ, Kostensalo, J, Mougeot, X, and Suhonen, J
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Particle and Plasma Physics ,electroweak interactions in nuclear physics ,ilmaisimet ,taustasäteily ,Molecular ,Nuclear ,beta decay ,ydinfysiikka ,Atomic ,Nuclear & Particles Physics ,nuclear structure and decays - Abstract
We present high-precision theoretical predictions for the electron energy spectra for the ground-state to ground-state β decays of 214Pb, 212Pb, and 85Kr most relevant to the background of liquid xenon dark matter detectors. The effects of nuclear structure on the spectral shapes are taken into account using large-scale shell-model calculations. Final spectra also include atomic screening and exchange effects. The impact of nuclear structure effects on the 214Pb and 212Pb spectra below ≈100 keV, pertinent for several searches for new physics, are found to be comparatively larger than those from the atomic effects alone. We find that the full calculation for 214Pb (212Pb) predicts 15.0%–23.2% (12.1%–19.0%) less event rate in a 1–15 keV energy region of interest compared to the spectrum calculated as an allowed transition when using values of the weak axial vector coupling in the range gA=0.7–1.0. The discrepancy highlights the importance of both a proper theoretical treatment and the need for direct measurements of these spectra for a thorough understanding of β decay backgrounds in future experiments. peerReviewed
- Published
- 2020
8. Limits on the Existence of sub-MeV Sterile Neutrinos from the Decay of Be7 in Superconducting Quantum Sensors
- Author
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Friedrich, S., primary, Kim, G. B., additional, Bray, C., additional, Cantor, R., additional, Dilling, J., additional, Fretwell, S., additional, Hall, J. A., additional, Lennarz, A., additional, Lordi, V., additional, Machule, P., additional, McKeen, D., additional, Mougeot, X., additional, Ponce, F., additional, Ruiz, C., additional, Samanta, A., additional, Warburton, W. K., additional, and Leach, K. G., additional
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- 2021
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9. Improved calculations of β decay backgrounds to new physics in liquid xenon detectors
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Haselschwardt, S. J., primary, Kostensalo, J., additional, Mougeot, X., additional, and Suhonen, J., additional
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- 2020
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10. Direct Measurement of the Be7 L/K Capture Ratio in Ta-Based Superconducting Tunnel Junctions
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Fretwell, S., primary, Leach, K. G., additional, Bray, C., additional, Kim, G. B., additional, Dilling, J., additional, Lennarz, A., additional, Mougeot, X., additional, Ponce, F., additional, Ruiz, C., additional, Stackhouse, J., additional, and Friedrich, S., additional
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- 2020
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11. Direct determination of the La138β -decay Q value using Penning trap mass spectrometry
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Sandler, R., primary, Bollen, G., additional, Dissanayake, J., additional, Eibach, M., additional, Gulyuz, K., additional, Hamaker, A., additional, Izzo, C., additional, Mougeot, X., additional, Puentes, D., additional, Quarati, F. G. A., additional, Redshaw, M., additional, Ringle, R., additional, and Yandow, I., additional
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- 2019
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12. Erratum: Reliability of usual assumptions in the calculation ofβandνspectra [Phys. Rev. C91, 055504 (2015)]
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Mougeot, X., primary
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- 2015
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13. Reliability of usual assumptions in the calculation ofβandνspectra
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Mougeot, X., primary
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- 2015
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14. Consistent calculation of the screening and exchange effects in allowedβ−transitions
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Mougeot, X., primary and Bisch, C., additional
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- 2014
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15. Structure of unbound neutron-rich9He studied using single-neutron transfer
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Al Kalanee, T., primary, Gibelin, J., additional, Roussel-Chomaz, P., additional, Keeley, N., additional, Beaumel, D., additional, Blumenfeld, Y., additional, Fernández-Domínguez, B., additional, Force, C., additional, Gaudefroy, L., additional, Gillibert, A., additional, Guillot, J., additional, Iwasaki, H., additional, Krupko, S., additional, Lapoux, V., additional, Mittig, W., additional, Mougeot, X., additional, Nalpas, L., additional, Pollacco, E., additional, Rusek, K., additional, Roger, T., additional, Savajols, H., additional, de Séréville, N., additional, Sidorchuk, S., additional, Suzuki, D., additional, Strojek, I., additional, and Orr, N. A., additional
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- 2013
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16. Evidence for the exchange effect in theβdecay of241Pu
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Mougeot, X., primary, Bé, M.-M., additional, Bisch, C., additional, and Loidl, M., additional
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- 2012
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17. Low-lying neutronfp-shell intruder states in27Ne
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Brown, S. M., primary, Catford, W. N., additional, Thomas, J. S., additional, Fernández-Domínguez, B., additional, Orr, N. A., additional, Labiche, M., additional, Rejmund, M., additional, Achouri, N. L., additional, Al Falou, H., additional, Ashwood, N. I., additional, Beaumel, D., additional, Blumenfeld, Y., additional, Brown, B. A., additional, Chapman, R., additional, Chartier, M., additional, Curtis, N., additional, de France, G., additional, de Sereville, N., additional, Delaunay, F., additional, Drouart, A., additional, Force, C., additional, Franchoo, S., additional, Guillot, J., additional, Haigh, P., additional, Hammache, F., additional, Lapoux, V., additional, Lemmon, R. C., additional, Leprince, A., additional, Maréchal, F., additional, Mougeot, X., additional, Mouginot, B., additional, Nalpas, L., additional, Navin, A., additional, Patterson, N. P., additional, Pietras, B., additional, Pollacco, E. C., additional, Ramus, A., additional, Scarpaci, J. A., additional, Stefan, I., additional, and Wilson, G. L., additional
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- 2012
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18. Publisher’s Note: Emergence of theN=16shell gap in21O [Phys. Rev. C84, 011301(R) (2011)]
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Fernandez-Dominguez, B., primary, Thomas, J. S., additional, Catford, W. N., additional, Delaunay, F., additional, Brown, S. M., additional, Orr, N. A., additional, Rejmund, M., additional, Labiche, M., additional, Chartier, M., additional, Achouri, N. L., additional, Al Falou, H., additional, Ashwood, N. I., additional, Beaumel, D., additional, Blumenfeld, Y., additional, Brown, B. A., additional, Chapman, R., additional, Curtis, N., additional, Force, C., additional, de France, G., additional, Franchoo, S., additional, Guillot, J., additional, Haigh, P., additional, Hammache, F., additional, Lapoux, V., additional, Lemmon, R. C., additional, Marechal, F., additional, Moro, A. M., additional, Mougeot, X., additional, Mouginot, B., additional, Nalpas, L., additional, Navin, A., additional, Patterson, N., additional, Pietras, B., additional, Pollacco, E. C., additional, Leprince, A., additional, Ramus, A., additional, Scarpaci, J. A., additional, de Sereville, N., additional, Stephan, I., additional, Sorlin, O., additional, and Wilson, G. L., additional
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- 2011
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19. Emergence of theN=16shell gap inO21
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Fernández-Domínguez, B., primary, Thomas, J. S., additional, Catford, W. N., additional, Delaunay, F., additional, Brown, S. M., additional, Orr, N. A., additional, Rejmund, M., additional, Labiche, M., additional, Chartier, M., additional, Achouri, N. L., additional, Al Falou, H., additional, Ashwood, N. I., additional, Beaumel, D., additional, Blumenfeld, Y., additional, Brown, B. A., additional, Chapman, R., additional, Curtis, N., additional, Force, C., additional, de France, G., additional, Franchoo, S., additional, Guillot, J., additional, Haigh, P., additional, Hammache, F., additional, Lapoux, V., additional, Lemmon, R. C., additional, Maréchal, F., additional, Moro, A. M., additional, Mougeot, X., additional, Mouginot, B., additional, Nalpas, L., additional, Navin, A., additional, Patterson, N., additional, Pietras, B., additional, Pollacco, E. C., additional, Leprince, A., additional, Ramus, A., additional, Scarpaci, J. A., additional, de Séréville, N., additional, Stephan, I., additional, Sorlin, O., additional, and Wilson, G. L., additional
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- 2011
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20. Breakdown of theZ=8Shell Closure in UnboundO12and its Mirror Symmetry
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Suzuki, D., primary, Iwasaki, H., additional, Beaumel, D., additional, Nalpas, L., additional, Pollacco, E., additional, Assié, M., additional, Baba, H., additional, Blumenfeld, Y., additional, De Séréville, N., additional, Drouart, A., additional, Franchoo, S., additional, Gillibert, A., additional, Guillot, J., additional, Hammache, F., additional, Keeley, N., additional, Lapoux, V., additional, Maréchal, F., additional, Michimasa, S., additional, Mougeot, X., additional, Mukha, I., additional, Okamura, H., additional, Otsu, H., additional, Ramus, A., additional, Roussel-Chomaz, P., additional, Sakurai, H., additional, Scarpaci, J.-A., additional, Sorlin, O., additional, Stefan, I., additional, and Takechi, M., additional
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- 2009
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21. γ spectroscopy ofNe25,27andNa26,27
- Author
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Obertelli, A., primary, Gillibert, A., additional, Alamanos, N., additional, Alvarez, M. A. G., additional, Auger, F., additional, Dayras, R., additional, Drouart, A., additional, Keeley, N., additional, Lapoux, V., additional, Mougeot, X., additional, Nalpas, L., additional, Pollacco, E., additional, Skaza, F., additional, Theisen, Ch., additional, France, G. de, additional, Jurado, B., additional, Mittig, W., additional, Rejmund, F., additional, Rejmund, M., additional, Roussel-Chomaz, P., additional, Savajols, H., additional, Pakou, A., additional, and Patronis, N., additional
- Published
- 2006
- Full Text
- View/download PDF
Catalog
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