223 results on '"Moortgat-Pick, G."'
Search Results
202. Momentum reconstruction at the LHC for probing CP violation in the stop sector.
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Moortgat-Pick, G., Rolbiccki, K., and Tattersall, J.
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ASYMMETRY (Chemistry) , *HADRONS , *PARTICLES (Nuclear physics) , *PARTONS , *SUPERGRAVITY , *SUPERSYMMETRY - Abstract
We study the potential to observe CP-violating effects in supersymmetric t~1-cascade decay chains at the LHC. Asymmetries composed of triple products of momenta of the final-state particles are sensitive to CP-violating effects. Because of large boosts that dilute the asymmetries, these can be difficult to observe. If all particle masses in a cascade decay are known, it may be possible to reconstruct all momenta in the decay chains on an event-by-event basis even when we have missing momentum due to a stable lightest supersymmetric particle. After the reconstruction, the nondiluted CP-violating signal can be recovered and gets significantly enhanced so that an observation may become feasible. A fully hadronic study has been completed to define the areas of the minimal supergravity parameter space that may yield a 3-σ observation with 500??fb-1 at the LHC. [ABSTRACT FROM AUTHOR]
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- 2011
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- View/download PDF
203. Impact of <img src="/fulltext-image.asp?format=htmlnonpaginated&src=61AHB926ECQ6G9DG_html\" border="0" alt="$e^+$" /> and <img src="/fulltext-image.asp?format=htmlnonpaginated&src=61AHB926ECQ6G9DG_html\" border="0" alt="$e^-$" /> beam polarization on chargino and neutralino production at a linear collider
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Moortgat-Pick, G., Bartl, A., Fraas, H., and Majerotto, W.
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Abstract.: We study the production processes , , and , working out the advantages of polarizing both beams. For with and with we perform a detailed analysis, including the complete spin correlations between production and decay. We analyze the forward–backward asymmetry of the decay electron for various beam polarizations. We also study polarization asymmetries in . These asymmetries strongly constrain the gaugino parameter and the masses , , also if . We give numerical predictions for three scenarios for a linear collider with –1000 GeV.
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- 2000
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204. SUSY particle physics summary
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Degrassi, G., Bartl, A., Beccaria, M., Brignole, A., Djouadi, A., Eberl, H., Freitas, A., Guasch, J., Heinemeyer, S., Hollik, W., Kalinowski, J., Kneur, J. L., Kraml, S., Majerotto, W., Antonio Masiero, Moortgat-Pick, G., Moultaka, G., Mühlleitner, M., Renard, F. M., Rossi, A., Solà, J., Slavich, P., Spira, M., Stockinger, D., Weiglein, G., Verzegnassi, C., Zerwas, P. M., Degrassi, Giuseppe, Bartl, A, Beccaria, M, Brignole, A, Djouadi, A, Eberl, H, Freitas, A, Guasch, J, Heinemeyer, S, Hollik, W, Kalinowski, J, Kneur, Jl, Kraml, S, Majerotto, W, Masiero, A, Moortgat Pick, G, Moultaka, G, Muhlleitner, M, Renard, Fm, Rossi, A, Sola, J, Slavich, P, Spira, M, Stockinger, D, Weiglein, G, Verzegnassi, C, and Zerwas, Pm
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Physics::Instrumentation and Detectors ,High Energy Physics::Phenomenology ,Physics::Accelerator Physics ,High Energy Physics::Experiment - Abstract
A review of the activity of the European Network "Physics at Colliders" in the area of SUSY particle physics is presented.
205. Development of a superconducting helical undulator for the ILC positron source
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Ivanyushenkov, Y., Baynham, E., Bradshaw, T., Brummitt, A., Carr, S., Rochford, J., Clarke, J. A., Malyshev, O. B., Scott, D. J., Shepherd, B. J. A., Bailey, I. R., Cooke, P., Dainton, J. B., Oleg Malyshev, Barber, D. P., and Moortgat-Pick, G. A.
206. LHC/ILC interplay for challenging SUSY scenarios
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Desch, K., Kalinowski, J., Moortgat-Pick, G., Krzysztof Rolbiecki, and Stirling, W. J.
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High Energy Physics - Phenomenology ,High Energy Physics - Phenomenology (hep-ph) ,High Energy Physics::Phenomenology ,FOS: Physical sciences ,High Energy Physics::Experiment - Abstract
Combined analyses at the Large Hadron Collider and at the International Linear Collider are important to unravel a difficult region of supersymmetry that is characterized by scalar SUSY particles with masses around 2 TeV. Precision measurements of masses, cross sections and forward-backward asymmetries allow to determine the fundamental supersymmetric parameters even if only a small part of the spectrum is accessible. Mass constraints for the heavy particles can be derived., Comment: 5 pages, 1 eps figure, ilcws07 style; Talk given at 2007 International Linear Collider Workshop (LCWS07 and ILC07), Hamburg, Germany, 30 May - 3 Jun 2007
207. Positron source target survivability studies
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Hesselbach, S., Ian Bailey, Fernandez-Hernando, J. L., Jenner, L. J., Moortgat-Pick, G. A., Riemann, S., Rochford, J. H., Schaelicke, A., Ushakov, A., and Zang, L.
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Physics::Accelerator Physics
208. Testing nonlinear-QED at the future linear collider with an intense laser
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Anthony Hartin, Porto, S., and Moortgat-Pick, G.
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High Energy Physics - Phenomenology ,High Energy Physics - Phenomenology (hep-ph) ,FOS: Physical sciences ,Physics::Accelerator Physics ,High Energy Physics::Experiment - Abstract
The future linear collider will collide dense $e^+e^-$ bunches at high energies up to 1 TeV, generating very intense electromagnetic fields at the interaction point (IP). These fields are strong enough to lead to nonlinear effects which affect all IP processes and which are described by strong field physics theory. In order to test this theory, we propose an experiment that will focus an intense laser on the LC electron beam post-IP. Similar experiments at SLAC E144 have investigated nonlinear Compton scattering, Breit-Wheeler pair production using an electron beam of 46.6 GeV. The higher beam energies available at the future LC would allow more precise studies of these phenomena. Mass-shift and spin-dependent effects could also be investigated., Talk presented at the International Workshop on Future Linear Colliders (LCWS13), Tokyo, Japan, 11-15 November 2013
209. Physics at the CLIC e+e- Linear Collider -- Input to the Snowmass process 2013
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Abramowicz, H., Abusleme, A., Afanaciev, K., Alexander, G., Alipour Tehrani, N., Alonso, O., Andersen, K. K., Arfaoui, S., Balazs, C., Barklow, T., Battaglia, M., Benoit, M., Bilki, B., Blaising, J. J., Boland, M., Boronat, M., Bozovic Jelisavcic, I., Burrows, P., Chefdeville, M., Contino, R., Dannheim, D., Demarteau, M., Diaz Gutierrez, M. A., Dieguez, A., Duarte Campderros, J., Eigen, G., Elsener, K., Feldman, D., Felzmann, U., Firlej, M., Firu, E., Fiutowski, T., Francis, K., Gaede, F., Garcia Garcia, I., Ghenescu, V., Giudice, G., Graf, N., Grefe, C., Grojean, C., Gupta, R. S., Hauschild, M., Holmestad, H., Idzik, M., Joram, C., Kananov, S., Karyotakis, Y., Killenberg, M., Klempt, W., Kraml, S., Krupa, B., Kulis, S., Lastovicka, T., Leblanc, G., Levy, A., Levy, I., Linssen, L., Lucaci Timoce, A., Lukic, S., Makarenko, V., Marshall, J., Martin, V., Mikkelsen, R. E., Milutinovic-Dumbelovic, G., Miyamoto, A., Klaus Moenig, Moortgat-Pick, G., Moron, J., Munnich, A., Neagu, A., Pandurovic, M., Pappadopulo, D., Pawlik, B., Porod, W., Poss, S., Preda, T., Rassool, R., Rattazzi, R., Redford, S., Reichold, A., Repond, J., Riemann, S., Robson, A., Roloff, P., Ros, E., Rosten, J., Ruiz-Jimeno, A., Rzehak, H., Sailer, A., Schlatter, D., Schulte, D., Sefkow, F., Seidel, K., Shumeiko, N., Sicking, E., Simon, F., Smith, J., Soldner, C., Stapnes, S., Strube, J., Suehara, T., Swientek, K., Szalay, M., Tanabe, T., Tesar, M., Thamm, A., Thomson, M., Trenado Garcia, J., Uggerhoj, U. I., Kraaij, E., Vila, I., Vilella, E., Villarejo, M. A., Vogel Gonzalez, M. A., Vos, M., Watson, N., Weerts, H., Wells, J. D., Weuste, L., Wistisen, T. N., Wootton, K., Xia, L., Zawiejski, L., Zgura, I. S., BOMBAR, Claudine, 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), Laboratoire de Physique Subatomique et de Cosmologie (LPSC), Université Joseph Fourier - Grenoble 1 (UJF)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP )-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Centre National de la Recherche Scientifique (CNRS), and CLIC
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Accelerator Physics (physics.acc-ph) ,Physics - Instrumentation and Detectors ,[PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex] ,[PHYS.PHYS.PHYS-ACC-PH]Physics [physics]/Physics [physics]/Accelerator Physics [physics.acc-ph] ,FOS: Physical sciences ,High Energy Physics - Experiment ,High Energy Physics - Experiment (hep-ex) ,High Energy Physics - Phenomenology (hep-ph) ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,Detectors and Experimental Techniques ,physics.ins-det ,physics.acc-ph ,Particle Physics - Phenomenology ,hep-ex ,High Energy Physics::Phenomenology ,hep-ph ,[PHYS.PHYS.PHYS-ACC-PH] Physics [physics]/Physics [physics]/Accelerator Physics [physics.acc-ph] ,Instrumentation and Detectors (physics.ins-det) ,Accelerators and Storage Rings ,[PHYS.HPHE] Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,High Energy Physics - Phenomenology ,[PHYS.PHYS.PHYS-INS-DET] Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,Physics::Accelerator Physics ,Physics - Accelerator Physics ,High Energy Physics::Experiment ,Particle Physics - Experiment - Abstract
This paper summarizes the physics potential of the CLIC high-energy e+e- linear collider. It provides input to the Snowmass 2013 process for the energy-frontier working groups on The Higgs Boson (HE1), Precision Study of Electroweak Interactions (HE2), Fully Understanding the Top Quark (HE3), as well as The Path Beyond the Standard Model -- New Particles, Forces, and Dimensions (HE4). It is accompanied by a paper describing the CLIC accelerator study, submitted to the Frontier Capabilities group of the Snowmass process., Comment: Updated the author list, updated Higgs results and small changes in the text of the Higgs section, updated results on composite Higgs bosons, added and updated references. Final submission for the Snowmass proceedings
210. Working Group Report: Top Quark
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Agashe, K., Erbacher, R., Gerber, C. E., Melnikov, K., Schwienhorst, R., Mitov, A., Vos, M., Wimpenny, S., Adelman, J., Baumgart, M., Garcia-Bellido, A., Loginov, A., Jung, A., Schulze, M., Shelton, J., Craig, N., Velasco, M., Golling, T., Hubisz, J., Ivanov, A., Perelstein, M., Chekanov, S., Dolen, J., Pilot, J., Pöschl, R., Tweedie, B., Alioli, S., Alvarez-Gonzalez, B., Amidei, D., Andeen, T., Arce, A., Auerbach, B., Avetisyan, A., Backovic, M., Bai, Y., Begel, M., Berge, S., Bernard, C., Bernius, C., Bhattacharya, S., Black, K., Blondel, A., Bloom, K., Bose, T., Boudreau, J., Brau, J., Broggio, A., Brooijmans, G., Brost, E., Calkins, R., Chakraborty, D., Childress, T., Choudalakis, G., Coco, V., Conway, J. S., Degrande, C., Delannoy, A., Deliot, F., Asta, L., Drueke, E., Dutta, Bhaskar, Effron, A., Ellis, K., Erdmann, J., Evans, J., Feng, C., Feng, E., Ferroglia, A., Finelli, K., Flanagan, W., Fleck, I., Freitas, A., Garberson, F., Gonzalez Suarez, R., Graesser, M. L., Graf, N., Greenwood, Z., George, J., Group, C., Gurrola, A., Hammad, G., Han, T., Han, Z., Heintz, U., Hoeche, S., Horiguchi, T., Iashvili, I., Ismail, A., Jain, S., Janot, P., Johns, W., Joshi, J., Aurelio Juste, Kamon, T., Kao, C., Kats, Y., Katz, A., Kaur, M., Kehoe, R., Keung, W., Khalil, S., Khanov, A., Kharchilava, A., Kidonakis, N., Kilic, C., Kolev, N., Kotwal, A., Kraus, J., Krohn, D., Kruse, M., Kumar, A., Lee, S., Luiggi, E., Mantry, S., Melo, A., Miller, D., Moortgat-Pick, G., Narain, M., Odell, N., Oksuzian, Y., Oreglia, M., Penin, A., Peters, Y., Pollard, C., Poss, S., Prosper, H. B., Rappoccio, S., Redford, S., Reece, M., Rizatdinova, F., Roloff, P., Ruiz, R., Saleem, M., Schoenrock, B., Schwanenberger, C., Schwarz, T., Seidel, K., Shabalina, E., Sheldon, P., Simon, F., Sinha, Kuver, Skands, P., Skubik, P., Sterman, G., Stolarski, D., Strube, J., Stupak, J., Su, S., Tesar, M., Thomas, S., Thompson, E., Tipton, P., Varnes, E., Vignaroli, N., Virzi, J., Vogel, M., Walker, D., Wang, K., Webber, B., Wells, J. D., Westhoff, S., Whiteson, D., Williams, M., Wu, S., Yang, U., Yokoya, H., Yoo, H., Zhang, H., Zhou, N., Zhu, H., and Zupan, J.
211. Linear Collider Physics Resource Book for Snowmass 2001 - Part 1: Introduction
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Abe, T., Arkani-Hamed, N., Asner, D., Baer, H., Bagger, J., Balazs, C., Baltay, C., Barker, T., Barklow, T., Barron, J., Baur, U., Beach, R., Bellwied, R., Bigi, I., Blöchinger, C., Boege, S., Bolton, T., Bower, G., Brau, J., Breidenbach, M., Brodsky, S. J., Burke, D., Burrows, P., Butler, J. N., Chakraborty, D., Cheng, H. C., Chertok, M., Choi, S. Y., Cinabro, D., Corcella, G., Cordero, R. K., Danielson, N., Davoudiasl, H., Dawson, S., Denner, A., Derwent, P., Diaz, M. A., Dima, M., Dittmaier, S., Dixit, M., Dixon, L., Dobrescu, B., Doncheski, M. A., Duckwitz, M., Dunn, J., Early, J., Erler, J., Feng, J. L., Ferretti, C., Fisk, H. E., Fraas, H., Freitas, A., Frey, R., Gerdes, D., Gibbons, L., Godbole, R., Godfrey, S., Goodman, E., Gopalakrishna, S., Graf, N., Grannis, P. D., Gronberg, J., Gunion, J., Haber, H. E., Han, T., Hawkings, R., Hearty, C., Heinemeyer, S., Hertzbach, S. S., Heusch, C., Hewett, J., Hikasa, K., Hiller, G., Hoang, A., Hollebeek, R., Iwasaki, M., Jacobsen, R., Jaros, J., Juste, A., Kadyk, J., Kalinowski, J., Kalyniak, P., Kamon, T., Karlen, D., Keller, L., Koltick, D., Kribs, G., Kronfeld, A., Leike, A., Logan, H. E., Lykken, J., Macesanu, C., Magill, S., Marciano, W., Markiewicz, T. W., Martin, S., Maruyama, T., Matchev, K., Moenig, K., Montgomery, H. E., Moortgat-Pick, G., Moreau, G., Mrenna, S., Murakami, B., Murayama, H., Nauenberg, U., Neal, H., Newman, B., Nojiri, M., Orr, L. H., Paige, F., Para, A., Pathak, S., Peskin, M. E., Plehn, T., Porter, F., Potter, C., Prescott, C., Rainwater, D., Raubenheimer, T., Repond, J., Riles, K., Rizzo, T., Ronan, M., Rosenberg, L., Rosner, J., Roth, M., Rowson, P., Schumm, B., Seppala, L., Seryi, A., Siegrist, J., Sinev, N., Skulina, K., Sterner, K. L., Stewart, I., Su, S., Tata, X., Telnov, V., Teubner, T., Tkaczyk, S., Turcot, A. S., Bibber, K., Kooten, R., Vega, R., Wackeroth, D., Wagner, D., Waite, A., Walkowiak, W., Weiglein, G., James Daniel Wells, W Wester, Iii, Williams, B., Wilson, G., Wilson, R., Winn, D., Woods, M., Wudka, J., Yakovlev, O., Yamamoto, H., and Yang, H. J.
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hep-ex ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,hep-ph ,Particle Physics - Experiment ,Particle Physics - Phenomenology - Abstract
This Resource Book reviews the physics opportunities of a next-generation e+e- linear collider and discusses options for the experimental program. Part 1 contains the table of contents and introduction and gives a summary of the case for a 500 GeV linear collider.
212. TESLA: The Superconducting electron positron linear collider with an integrated x-ray laser laboratory. Technical design report. Part 3. Physics at an e+ e- linear collider
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Heuer, R. D., Miller, D. J., Richard, F., Zerwas, P. M., Aguilar Saavedra, J. A., Alcaraz, J., Ali, A., Ambrosanio, S., Andreazza, A., Andruszkow, J., Badelek, B., Ballestrero, A., Barklow, T., Bartl, A., Battaglia, M., Behnke, T., Belanger, G., Benson, D., Berggren, M., Bernreuther, W., Besancon, M., Biebel, J., Biebel, O., Bigi, I., van der Bij, J. J., Binoth, T., Blair, G. A., Blochinger, C., Blumlein, J., Boonekamp, M., Boos, E., Borissov, G., Brandenburg, A., Brient, J. C., Bruni, G., Busser, K., Burrows, P., Casalbuoni, R., Castanier, C., Chankowski, P., Chekanov, A., Chierici, R., Choi, S. Y., Christova, P., Ciafaloni, P., Comelli, D., Conteras, G., Danilov, M., Da Silva, W., Deandrea, A., de Boer, W., De Curtis, S., De Jong, S. J., Denner, A., De Roeck, A., Desch, K., De Wolf, E., Dittmaier, S., Djordjadze, V., Djouadi, A., Dominici, D., Doncheski, M., Dova, M. T., Drollinger, V., Eberl, H., Erler, J., Eskreys, A., Espinosa, J. R., Evanson, N., Fernandez, E., Forshaw, J., Fraas, H., Franke, F., Freitas, A., Gangemi, F., Garcia Abia, P., Gatto, R., Gay, P., Gehrmann, T., Gehrmann De Ridder, A., Gensch, U., Ghodbane, N., Ginzburg, I. F., Godbole, R., Godfrey, S., Gounaris, G., Grazzini, M., Gross, E., Grzadkowski, B., Guasch, J., Gunion, J. F., Hagiwara, K., Han, T., Harder, K., Harlander, R., Hawkings, R., Heinemeyer, S., Hesselbach, S., Heusch, C. A., Hewett, J., Hiller, G., Hoang, A., Hollik, W., Illana, J. I., Ilyin, V. A., Indumathi, D., Ishihara, S., Jack, M., Jadach, S., Jegerlehner, F., Jezabek, M., Jikia, G., Jonsson, L., Jankowski, P., Jurkiewicz, P., Juste, A., Kagan, A., Kalinowski, J., Kalmykov, M., Kalyniak, P., Kamal, B., Kamoshita, J., Kanemura, S., Kapusta, F., Katsanevas, S., Keranen, R., Khoze, V., Kiiskinen, A., Kilian, W., Klasen, M., Kneur, J. L., Kniehl, B. A., Kobel, M., Kolodziej, K., Kramer, M., Kraml, S., Krawczyk, M., Kuhn, J. H., Kwiecinski, J., Laurelli, P., Leike, A., Letts, J., Lohmann, W., Lola, S., Lutz, P., Mattig, P., Majerotto, W., Mannel, T., Martinez, M., Martyn, H. U., Mayer, T., Mele, B., Melles, M., Menges, W., Merino, G., Meyer, N., Minkowski, P., Miquel, R., Monig, K., Montagna, G., Moortgat Pick, G., Mora de Freitas, P., Moreau, G., Moretti, Mauro, Moretti, S., Motyka, L., Moultaka, G., Muhlleitner, M., Nauenberg, U., Nisius, R., Nowak, H., Ohl, T., Orava, R., Orloff, J., Osland, P., Pancheri, G., Pankov, A. A., Papadopoulos, C., Paver, N., Peralta, D., Phillips, H. T., Picinini, F., Placzek, W., Pohl, M., Porod, W., Pukhov, A., Raspereza, A., Reid, D., Riemann, S., Riemann, T., Rosati, S., Roth, M., Roth, S., Royon, C., Ruckl, R., Ruiz Morales, E., Sachwitz, M., Schieck, J., Schreiber, H. J., Schulte, D., Schumacher, M., Settles, R. D., Seymour, M., Shanidze, R., Sjostrand, T., Skrzypek, M., Soldner Rembold, S., Sopczak, A., Spiesberger, H., Spira, M., Steiner, H., Stratmann, M., Sumino, Y., Tapprogge, S., Telnov, V., Teubner, T., Tonazzo, A., Troncon, C., Veretin, O., Verzegnassi, C., Vest, A., Vicini, A., Videau, H., Vogelsang, W., Vogt, A., Vogt, H., Wackeroth, D., Wagner, A., Wallon, S., Weiglein, G., Weinzierl, S., Wengler, T., Wermes, N., Werthenbach, A., Wilson, G., Winter, M., Zarnecki, A. F., Ziaja, B., and Zochowski, J.
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Physics::Instrumentation and Detectors ,Physics::Medical Physics ,Computer Science::Mathematical Software ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,hep-ph ,Particle Physics - Phenomenology - Abstract
The TESLA Technical Design Report Part III: Physics at an e+e- Linear Collider The TESLA Technical Design Report Part III: Physics at an e+e- Linear Collider
213. Les Houches 'Physics at TeV Colliders 2003' Beyond the Standard Model Working Group: Summary report
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Allanach, BC, Aranda, A, Baer, H, Balazs, C, Battaglia, M, Belanger, G, Boudjema, F, Desch, K, Diaz-Cruz, JL, Dittmar, M, Djouadi, A, Dewhirst, G, Dominici, D, Escalier, M, Fano, L, Ferrag, S, Gascon-Shotkin, S, Gennai, S, Godbole, R, Guasch, J, Guchait, M, Gunion, J, Heinemeyer, S, Hewett, J, Kalinowski, J, Kawagoe, K, Kilian, W, Kneur, JL, Kraml, S, Lafaye, R, Laforge, B, Lester, CG, Mazumdar, K, Mambrini, Y, Moortgat, F, Moortgat-Pick, G, Moretti, S, Muhlleitner, M, Nicollerat, AS, Nikitenko, A, Nojiri, M, Plehn, T, Polesello, G, Porod, W, Prieur, D, Pukhov, A, Ravat, O, Richardson, P, Rizzo, TG, De Roeck, A, Schumann, S, Skands, P, Slavich, P, Spira, M, Spiropoulu, M, Sridhar, K, Tovey, DR, Weiglein, G, Wells, JD, Zerwas, D, Institut de Physique Nucléaire de Lyon (IPNL), 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), 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), Laboratoire de l'Accélérateur Linéaire (LAL), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), and BOMBAR, Claudine
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Physics ,Particle physics ,Large Hadron Collider ,010308 nuclear & particles physics ,Physics beyond the Standard Model ,Kaluza–Klein theory ,High Energy Physics::Phenomenology ,FOS: Physical sciences ,Superpartner ,01 natural sciences ,law.invention ,Standard Model ,[PHYS.HPHE] Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,High Energy Physics - Phenomenology ,High Energy Physics - Phenomenology (hep-ph) ,law ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,0103 physical sciences ,Higgs boson ,Centre for Theoretical Studies ,Centre for Theoretical Studies (Ceased to exist at the end of 2003) ,010306 general physics ,Collider ,Minimal Supersymmetric Standard Model - Abstract
The work contained herein constitutes a report of the ``Beyond the Standard Model'' working group for the Workshop "Physics at TeV Colliders", Les Houches, France, 26 May--6 June, 2003. The research presented is original, and was performed specifically for the workshop. Tools for calculations in the minimal supersymmetric standard model are presented, including a comparison of the dark matter relic density predicted by public codes. Reconstruction of supersymmetric particle masses at the LHC and a future linear collider facility is examined. Less orthodox supersymmetric signals such as non-pointing photons and R-parity violating signals are studied. Features of extra dimensional models are examined next, including measurement strategies for radions and Higgs', as well as the virtual effects of Kaluza Klein modes of gluons. An LHC search strategy for a heavy top found in many little Higgs model is presented and finally, there is an update on LHC $Z'$ studies., 113 pages, ed B.C. Allanach, v5 has changes to part XVI
214. Linear Collider Physics Resource Book for Snowmass 2001 - Part 3: Studies of Exotic and Standard Model Physics
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Abe, T., Arkani-Hamed, N., Asner, D., Baer, H., Bagger, J., Balazs, C., Baltay, C., Barker, T., Barklow, T., Barron, J., Baur, U., Beach, R., Bellwied, R., Bigi, I., Blochinger, C., Boege, S., Bolton, T., Bower, G., Brau, J., Breidenbach, M., Brodsky, S. J., Burke, D., Burrows, P., Butler, J. N., Chakraborty, D., Cheng, H. C., Chertok, M., Choi, S. Y., Cinabro, D., Corcella, G., Cordero, R. K., Danielson, N., Davoudiasl, H., Dawson, S., Ansgar Denner, Derwent, P., Diaz, M. A., Dima, M., Dittmaier, S., Dixit, M., Dixon, L., Dobrescu, B., Doncheski, M. A., Duckwitz, M., Dunn, J., Early, J., Erler, J., Feng, J. L., Ferretti, C., Fisk, H. E., Fraas, H., Freitas, A., Frey, R., Gerdes, D., Gibbons, L., Godbole, R., Godfrey, S., Goodman, E., Gopalakrishna, S., Graf, N., Grannis, P. D., Gronberg, J., Gunion, J., Haber, H. E., Han, T., Hawkings, R., Hearty, C., Heinemeyer, S., Hertzbach, S. S., Heusch, C., Hewett, J., Hikasa, K., Hiller, G., Hoang, A., Hollebeek, R., Iwasaki, M., Jacobsen, R., Jaros, J., Juste, A., Kadyk, J., Kalinowski, J., Kalyniak, P., Kamon, T., Karlen, D., Keller, L., Koltick, D., Kribs, G., Kronfeld, A., Leike, A., Logan, H. E., Lykken, J., Macesanu, C., Magill, S., Marciano, W., Markiewicz, T. W., Martin, S., Maruyama, T., Matchev, K., Moenig, K., Montgomery, H. E., Moortgat-Pick, G., Moreau, G., Mrenna, S., Murakami, B., Murayama, H., Nauenberg, U., Neal, H., Newman, B., Nojiri, M., Orr, L. H., Paige, F., Para, A., Pathak, S., Peskin, M. E., Plehn, T., Porter, F., Potter, C., Prescott, C., Rainwater, D., Raubenheimer, T., Repond, J., Riles, K., Rizzo, T., Ronan, M., Rosenberg, L., Rosner, J., Roth, M., Rowson, P., Schumm, B., Seppala, L., Seryi, A., Siegrist, J., Sinev, N., Skulina, K., Sterner, K. L., Stewart, I., Su, S., Tata, X., Telnov, V., Teubner, T., Tkaczyk, S., Turcot, A. S., Bibber, K., Kooten, R., Vega, R., Wackeroth, D., Wagner, D., Waite, A., Walkowiak, W., Weiglein, G., Wells, J. D., W Wester, Iii, Williams, B., Wilson, G., Wilson, R., Winn, D., Woods, M., Wudka, J., Yakovlev, O., Yamamoto, H., and Yang, H. J.
215. Design of the Photon Collimators for the ILC Positron Helical Undulator
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Bungau, A., Bailey, I. R., Baynham, E., Bradshow, T. W., Brummitt, A., Carr, F. S., Clarke, J. A., Collomb, N. A., Dainton, J., Hartin, A. F., Hesselbach, S., Hock, K. M., Jenner, L. J., Lintern, A., Malyshev, O. B., Oleg Malyshev, Moortgat-Pick, G. A., Rochford, J., Ryder, N. C., Scott, D. J., and Zang, L.
216. SiD Letter of Intent
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Aihara, H., Burrows, P., Oreglia, M., Berger, E. L., Guarino, V., Repond, J., Weerts, H., Xia, L., Zhang, J., Zhang, Q., Srivastava, A., Butler, J. M., Goldstein, Joel, Velthuis, J., Radeka, V., Zhu, R. -Y, Lutz, P., Roeck, A., Elsener, K., Gaddi, A., Gerwig, H., Grefe, C., Klempt, W., Linssen, L., Schlatter, D., Speckmayer, P., Thom, J., Yang, J., Christian, D. C., Cihangir, S., Cooper, W. E., Demarteau, M., Fisk, H. E., Garren, L. A., Krempetz, K., Kutschke, R. K., Lipton, R., Para, A., Tschirhart, R., Wenzel, H., Yarema, R., Grunewald, M., Pankov, A., Dutta, T., Dauncey, P. D., Balbuena, J. P., Fleta, C., Lozano, M., Ullan, M., Christian, G. B., Faus-Golfe, A., Fuster, J., Lacasta, C., Marinnas, C., Vos, M., Duarte, J., Fernandez, M., Gonzalez, J., Jaramillo, R., Lopez, Virto A., Martinez-Eivero, C., Moya, D., Ruiz-Mimeno, A., Vila, I., Colledani, C., Dorokhov, A., Hu-Guo, C., Winter, M., Moortgat-Pick, G., Onoprienko, D. V., Kim, G. N., Park, H., Adloff, C., Blaha, J., Blaising, J. -J, Cap, S., Chefdeville, M., Drancourt, C., Espargiliare, A., Gaglione, R., Geffroy, N., Jacquemier, J., Karyotakis, Y., Prast, J., Vouters, G., Gronberg, J., Walston, S., Wright, D., Sawyer, L., Laloum, M., Ciobanu, C., Chauveau, J., Savoy-Navarro, A., Andricek, L., Moser, H. -G, Cowan, R. F., Fisher, P., Yamamoto, R. K., Kenney, C. J., Boos, E. E., Merkin, M., Chen, S., Chakraborty, D., Dyshkant, A., Hedin, D., Zutshi, V., Galkin, V., D Ascenzo, N., Ossetski, D., Saveliev, V., Kapusta, F., Masi, R., Vrba, V., Lu, C., Mcdonald, K. T., Smith, A. J. S., Bortoletto, D., Coath, R., Crooks, J., Damerell, C., Gibson, M., Nichols, A., Stanitzki, M., Strube, J., Turchetta, R., Tyndel, M., Weber, M., Worm, S., Zhang, Z., Barklow, T. L., Belymam, A., Breidenbach, M., Cassell, R., Craddock, W., Deaconu, C., Dragone, A., Graf, N. A., Haller, G., Herbst, R., Hewett, J. L., Jaros, J. A., Johnson, A. S., Kim, P. C., Macfarlane, D. B., Markiewicz, T., Maruyama, T., Mccormick, J., Moffeit, K., Neal, H. A., Nelson, T. K., Oriunno, M., Partridge, R., Michael Peskin, Rizzo, T. G., Rowson, P., Su, D., Woods, M., Chakrabarti, S., Dieguez, A., Garrido, Ll, Kaminski, J., Conway, J. S., Chertok, M., Gunion, J., Holbrook, B., Lander, R. L., Tripathi, S. M., Fadeyev, V., Schumm, B. A., Gill, J., Nauenberg, U., Oleinik, G., Wagner, S. R., Ranjan, K., Shivpuri, R., Varner, G. S., Orava, R., Kooten, R., Bilki, B., Charles, M., Kim, T. J., Mallik, U., Norbeck, E., Onel, Y., Brau, B. P., Willocq, S., Taylor, G. N., Riles, Keith, Yang, H. -J, Kriske, R., Cremaldi, L., Rahmat, R., Lastovicka-Medin, G., Seidel, S., Hildreth, M. D., Wayne, M., Brau, J. E., Frey, R., Sinev, N., Strom, D. M., Torrence, E., Banda, Y., Burrows, P. N., Devetak, E., Foster, B., Lastovicka, T., Li, Y. -M, Nomerotski, A., Riera-Babures, J., Vilasis-Cardona, X., Manly, S., Adeva, B., Iglesias Escudero, C., Vazquez Regueiro, P., Saborido Silva, J. J., Gallas Torreira, A., Gao, D., Jie, W., Jungfeng, Y., Li, C., Liu, S., Liu, Y., Sun, Y., Wang, Q., Yi, J., Yonggang, W., Zhao, Z., De, K., Farbin, A., Park, S., Smith, J., White, A. P., Yu, J., Lou, X. C., Abe, T., Iwasaki, M., Lubatti, H. J., Band, H. R., Feyzi, F., Prepost, R., Karchin, P. E., Milstene, C., Baltay, C., Dhawan, S., and Kwon, Y. -J
- Subjects
High Energy Physics - Experiment (hep-ex) ,Physics - Instrumentation and Detectors ,Physics::Instrumentation and Detectors ,FOS: Physical sciences ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,Instrumentation and Detectors (physics.ins-det) ,physics.ins-det ,High Energy Physics - Experiment - Abstract
Letter of intent describing SiD (Silicon Detector) for consideration by the International Linear Collider IDAG panel. This detector concept is founded on the use of silicon detectors for vertexing, tracking, and electromagnetic calorimetry. The detector has been cost-optimized as a general-purpose detector for a 500 GeV electron-positron linear collider., Comment: Letter of Intent for SiD detector concept presented to ILC IDAG
217. Linear Collider Physics Resource Book for Snowmass 2001 - Part 4: Theoretical, Accelerator, and Experimental Options
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Abe, T., Arkani-Hamed, N., Asner, D., Baer, H., Bagger, J., Balazs, C., Baltay, C., Barker, T., Barklow, T., Barron, J., Baur, U., Beach, R., Bellwied, R., Bigi, I., Blöchinger, C., Boege, S., Bolton, T., Bower, G., Brau, J., Breidenbach, M., Brodsky, S. J., Burke, D., Burrows, P., Butler, J. N., Chakraborty, D., Cheng, H. C., Chertok, M., Choi, S. Y., Cinabro, D., Corcella, G., Cordero, R. K., Danielson, N., Davoudiasl, H., Dawson, S., Ansgar Denner, Derwent, P., Diaz, M. A., Dima, M., Dittmaier, S., Dixit, M., Dixon, L., Dobrescu, B., Doncheski, M. A., Duckwitz, M., Dunn, J., Early, J., Erler, J., Feng, J. L., Ferretti, C., Fisk, H. E., Fraas, H., Freitas, A., Frey, R., Gerdes, D., Gibbons, L., Godbole, R., Godfrey, S., Goodman, E., Gopalakrishna, S., Graf, N., Grannis, P. D., Gronberg, J., Gunion, J., Haber, H. E., Han, T., Hawkings, R., Hearty, C., Heinemeyer, S., Hertzbach, S. S., Heusch, C., Hewett, J., Hikasa, K., Hiller, G., Hoang, A., Hollebeek, R., Iwasaki, M., Jacobsen, R., Jaros, J., Juste, A., Kadyk, J., Kalinowski, J., Kalyniak, P., Kamon, T., Karlen, D., Keller, L., Koltick, D., Kribs, G., Kronfeld, A., Leike, A., Logan, H. E., Lykken, J., Macesanu, C., Magill, S., Marciano, W., Markiewicz, T. W., Martin, S., Maruyama, T., Matchev, K., Moenig, K., Montgomery, H. E., Moortgat-Pick, G., Moreau, G., Mrenna, S., Murakami, B., Murayama, H., Nauenberg, U., Neal, H., Newman, B., Nojiri, M., Orr, L. H., Paige, F., Para, A., Pathak, S., Peskin, M. E., Plehn, T., Porter, F., Potter, C., Prescott, C., Rainwater, D., Raubenheimer, T., Repond, J., Riles, K., Rizzo, T., Ronan, M., Rosenberg, L., Rosner, J., Roth, M., Rowson, P., Schumm, B., Seppala, L., Seryi, A., Siegrist, J., Sinev, N., Skulina, K., Sterner, K. L., Stewart, I., Su, S., Tata, X., Telnov, V., Teubner, T., Tkaczyk, S., Turcot, A. S., Bibber, K., Kooten, R., Vega, R., Wackeroth, D., Wagner, D., Waite, A., Walkowiak, W., Weiglein, G., Wells, J. D., W Wester, Iii, Williams, B., Wilson, G., Wilson, R., Winn, D., Woods, M., Wudka, J., Yakovlev, O., Yamamoto, H., and Yang, H. J.
- Subjects
Physics::Instrumentation and Detectors ,hep-ex ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,hep-ph ,Particle Physics - Experiment ,Particle Physics - Phenomenology - Abstract
This Resource Book reviews the physics opportunities of a next-generation e+e- linear collider and discusses options for the experimental program. Part 4 discusses options for the linear collider program, at a number of levels. First, it presents a broad review of physics beyond the Standard Model, indicating how the linear collider is relevant to each possible pathway. Next, it surveys options for the accelerator and experimental plan, including the questions of the running scenario, the issue of one or two interaction regions, and the options for positron polarization, photon-photon collisions, and e-e- collisions. Finally, it reviews the detector design issues for the linear collider and presents three possible detector designs.
218. Construction of a full scale superconducting undulator module for the international linear collider positron source
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Clarke, J. A., Ian Bailey, Baynham, E., Bradshaw, T. W., Brummitt, A., Bungau, A., Carr, F. S., Collomb, N. A., Dainton, J., Hartin, A. F., Hesselbach, S., Hock, K. M., Ivanyushenkov, Y., Jenner, L. J., Lintern, A., Malyshev, O. B., Malysheva, L. I., Moortgat-Pick, G. A., Rochford, J., Ryder, N. C., Scott, D. J., Shepherd, B. J. A., and Zang, L.
219. Detector concepts
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Aarons, G., Abe, T., Abernathy, J., Ablikim, M., Abramowicz, H., Adey, D., Adloff, C., Adolphsen, C., Afanaciev, K., Agapov, I., Ahn, J. -K, Aihara, H., Akemoto, M., Del Carmenalabau, M., Albert, J., Albrecht, H., Albrecht, M., Alesini, D., Alexander, G., Alexander, J., Allison, W., Amann, J., Amirikas, R., An, Q., Anami, S., Ananthanarayan, B., Anderson, T., Andricek, L., Anduze, M., Anerella, M., Anfimov, N., Angal-Kalinin, D., Antipov, S., Antoine, C., Aoki, M., Aoza, A., Aplin, S., Appleby, R., Arai, Y., Araki, S., Arkan, T., Arnold, N., Arnold, R., Arnowitt, R., Artru, X., Arya, K., Aryshev, A., Asakawa, E., Asiri, F., Asner, D., Atac, M., Atoian, G., Attié, D., Augustin, J. -E, Augustine, D. B., Ayres, B., Aziz, T., Baars, D., Badaud, F., Baddams, N., Bagger, J., Bai, S., Bailey, D., Bailey, I. R., Baker, D., Balalykin, N. I., Balbuena, J. P., Baldy, J. -L, Ball, M., Ballestrero, A., Ballin, J., Baltay, C., Bambade, P., Ban, S., Band, H., Bane, K., Banerjee, B., Barbanotti, S., Barbareschi, D., Barbaro-Galtieri, A., Barber, D. P., Barbi, M., Bardin, D. Y., Barish, B., Barklow, T. L., Barlow, R., Barnes, V. E., Barone, M., Bartels, C., Bartsch, V., Basu, R., Battaglia, M., Batygin, Y., Baudot, J., Baur, U., Baynham, D. E., Beard, C., Bebek, C., Bechtle, P., Becker, U. J., Bedeschi, F., Bedjidian, M., Behera, P., Behnke, T., Bellantoni, L., Bellerive, A., Bellomo, P., Bentson, L. D., Benyamna, M., Bergauer, T., Berger, E., Bergholz, M., Beri, S., Berndt, M., Bernreuther, W., Bertolini, A., Besancon, M., Besson, A., Beteille, A., Bettoni, S., Beyer, M., Bhandari, R. K., Bharadwaj, V., Bhatnagar, V., Bhattacharya, S., Bhattacharyya, G., Bhattacherjee, B., Bhuyan, R., Bi, X. -J, Biagini, M., Bialowons, W., Biebel, O., Bieler, T., Bierwagen, J., Birch, A., Bisset, M., Biswal, S. S., Blackmore, V., Blair, G., Blanchard, G., Blazey, G., Blue, A., Blümlein, J., Boffo, C., Bohn, C., Boiko, V. I., Boisvert, V., Bondarchuk, E. N., Boni, R., Bonvicini, G., Boogert, S., Boonekamp, M., Boorman, G., Borras, K., Bortoletto, D., Bosco, A., Bosio, C., Bosland, P., Bosotti, A., Boudry, V., Boumediene, D. -E, Bouquet, B., Bourov, S., Bowden, G., Bower, G., Boyarski, A., Bozovic-Jelisavcic, I., Bozzi, C., Brachmann, A., Bradshaw, T. W., Brandt, A., Brasser, H. P., Brau, B., Brau, J. E., Breidenbach, M., Bricker, S., Brient, J. -C, Brock, I., Brodsky, S., Brooksby, C., Broome, T. A., Brown, D., Brownell, J. H., Bruchon, M., Brueck, H., Brummitt, A. J., Brun, N., Buchholz, P., Budagov, Y. A., Bulgheroni, A., Bulyak, E., Bungau, A., Bürger, J., Burke, D., Burkhart, C., Burrows, P., Burt, G., Burton, D., Büsser, K., Butler, J., Butterworth, J., Buzulutskov, A., Cabruja, E., Caccia, M., Cai, Y., Calcaterra, A., Caliier, S., Camporesi, T., Cao, J. -J, Cao, J. S., Capatina, O., Cappellini, C., Carcagno, R., Carena, M., Carloganu, C., Carosi, R., Carr, F. S., Carrion, F., Carter, H. F., Carter, J., Carwardine, J., Cassel, R., Cassell, R., Cavallari, G., Cavallo, E., Cembranos, J. A. R., Chakraborty, D., Chandez, F., Charles, M., Chase, B., Chattopadhyay, S., Chauveau, J., Chefdeville, M., Chehab, R., Chel, S., Chelkov, G., Chen, C., Chen, H. S., Chen, H. B., Chen, J. E., Chen, S. Y., Chen, S., Chen, X., Chen, Y. B., Cheng, J., Chevallier, M., Chi, Y. L., Chickering, W., Cho, G. -C, Cho, M. -H, Choi, J. -H, Choi, J. B., Choi, S. Y., Choi, Y. -I, Choudhary, B., Choudhury, D., Choudhury, S. R., Christian, D., Christian, G., Christophe, G., Chung, J. -H, Church, M., Ciborowski, J., Cihangir, S., Ciovati, G., Clarke, C., Clarke, D. G., Clarke, J. A., Clements, E., Coca, C., Coe, P., Cogan, J., Colas, P., Collard, C., Colledani, C., Combaret, C., Comerma, A., Compton, C., Constance, B., Conway, J., Cook, E., Cooke, P., Cooper, W., Corcoran, S., Cornat, R., Corner, L., Gil, E. C., Corvin, W. C., Ramusino, A. C., Cowan, R., Crawford, C., Cremaldi, L. M., Crittenden, J. A., Cussans, D., Cvach, J., Da Silva, W., Khah, H. D., Dabrowski, A., Dabrowski, W., Dadoun, O., Dai, J. P., Dainton, J., Daly, C., Damerell, C., Danilov, M., Daniluk, W., Daram, S., Datta, A., Dauncey, P., David, J., Davier, M., Davies, K. P., Dawson, S., Boer, W., Curtis, S., Groot, N., La Taille, C., Lira, A., Roeck, A., Sangro, R., Santis, S., Deacon, L., Deandrea, A., Klaus Dehmelt, Delagnes, E., Delahaye, J. -P, Delebecque, P., Delerue, N., Delferriere, O., Demarteau, M., Deng, Z., Denisov, Yu N., Densham, C. J., Desch, K., Deshpande, N., Devanz, G., Devetak, E., Dexter, A., Di Benedetto, V., Diéguez, Á, Diener, R., Dinh, N. D., Dixit, M., Dixit, S., Djouadi, A., Dolezal, Z., Dollan, R., Dong, D., Dong, H. Y., Dorfan, J., Dorokhov, A., Doucas, G., Downing, R., Doyle, E., Doziere, G., Drago, A., Dragt, A., Drake, G., Drásal, Z., Dreiner, H., Drell, P., Driouichi, C., Drozhdin, A., Drugakov, V., Du, S., Dugan, G., Duginov, V., Dulinski, W., Dulucq, F., Dutta, S., Dwivedi, J., Dychkant, A., Dzahini, D., Eckerlin, G., Edwards, H., Ehrenfeld, W., Ehrlichman, M., Ehrlichmann, H., Eigen, G., Elagin, A., Elementi, L., Eliasson, P., Ellis, J., Ellwood, G., Elsen, E., Emery, L., Enami, K., Endo, K., Enomoto, A., Eozénou, F., Erbacher, R., Erickson, R., Eyser, K. O., Fadeyev, V., Fang, S. X., Fant, K., Fasso, A., Giannelli, M. F., Fehlberg, J., Feld, L., Feng, J. L., Ferguson, J., Fernandez-Garcia, M., Fernandez-Hernando, J. L., Fiala, P., Fieguth, T., Finch, A., Finocchiaro, G., Fischer, P., Fisher, P., Fisk, H. E., Fitton, M. D., Fleck, I., Fleischer, M., Fleury, J., Flood, K., Foley, M., Ford, R., Fortin, D., Foster, B., Fourches, N., Francis, K., Frey, A., Frey, R., Friedsam, H., Frisch, J., Frishman, A., Fuerst, J., Fujii, K., Fujimoto, J., Fukuda, M., Fukuda, S., Funahashi, Y., Funk, W., Furletova, J., Furukawa, K., Furuta, F., Fusayasu, T., Fuster, J., Gadow, K., Gaede, F., Gaglione, R., Gai, W., Gajewski, J., Galik, R., Galkin, A., Galkin, V., Gallin-Martel, L., Gannaway, F., Gao, J. S., Gao, J., Gao, Y., Garbincius, P., Garcia-Tabares, L., Garren, L., Garrido, L., Garutti, E., Garvey, T., Garwin, E., Gascón, D., Gastal, M., Gatto, C., Gatto, R., Gay, P., Ge, L., Ge, M. Q., Ge, R., Geiser, A., Gellrich, A., Genat, J. -F, Geng, Z. Q., Gentile, S., Gerbick, S., Gerig, R., Ghosh, D. K., Ghosh, K., Gibbons, L., Giganon, A., Gillespie, A., Gillman, T., Ginzburg, I., Giomataris, I., Giunta, M., Gladkikh, P., Gluza, J., Godbole, R., Godfrey, S., Goldhaber, G., Goldstein, J., Gollin, G. D., Gonzalez-Sanchez, F. J., Goodrick, M., Gornushkin, Y., Gostkin, M., Gottschalk, E., Goudket, P., Eschrich, I. G., Gournaris, F., Graciani, R., Graf, N., Grah, C., Grancagnolo, F., Grandjean, D., Grannis, P., Grassellino, A., Graugés, E., Gray, S., Green, M., Greenhalgh, J., Greenshaw, T., Grefe, C., Gregor, I. -M, Grenier, G., Grimes, M., Grimm, T., Gris, P., Grivaz, J. -F, Groll, M., Gronberg, J., Grondin, D., Groom, D., Gross, E., Grunewald, M., Grupen, C., Grzelak, G., Gu, J., Gu, Y. -T, Guchait, M., Guiducci, S., Guler, A. M., Guler, H., Gulmez, E., Gunion, J., Guo, Z. Y., Gurtu, A., Ha, H. B., Haas, T., Haase, A., Haba, N., Haber, H., Haensel, S., Hagge, L., Hagura, H., Hajdu, C., Haller, G., Haller, J., Hallermann, L., Halyo, V., Hamaguchi, K., Hammond, L., Han, L., Han, T., Hand, L., Handu, V. K., Hano, H., Hansen, C., Hansen, J. D., Hansen, J. B., Hara, K., Harder, K., Hartin, A., Hartung, W., Hast, C., Hauptman, J., Hauschild, M., Hauviller, C., Havranek, M., Hawkes, C., Hawkings, R., Hayano, H., Hazumi, M., He, A., He, H. J., Hearty, C., Heath, H., Hebbeker, T., Hedberg, V., Hedin, D., Heifets, S., Heinemeyer, S., Heini, S., Helebrant, C., Helms, R., Heltsley, B., Henrot-Versille, S., Henschel, H., Hensel, C., Hermel, R., Herms, A., Herten, G., Hesselbach, S., Heuer, R. -D, Heusch, C. A., Hewett, J., Higashi, N., Higashi, T., Higashi, Y., Higo, T., Hildreth, M. D., Hiller, K., Hillert, S., Hillier, S. J., Himel, T., Himmi, A., Hinchliffe, I., Hioki, Z., Hirano, K., Hirose, T., Hisamatsu, H., Hisano, J., Hlaing, C. T., Hock, K. M., Hoeferkamp, M., Hohlfeld, M., Honda, Y., Hong, J., Hong, T. M., Honma, H., Horii, Y., Horvath, D., Hosoyama, K., Hostachy, J. -Y, Hou, M., Hou, W. -S, Howell, D., Hronek, M., Hsiung, Y. B., Hu, B., Hu, T., Huang, J. -Y, Huang, T. M., Huang, W. H., Huedem, E., Huggard, P., Hugonie, C., Hu-Guo, C., Huitu, K., Hwang, Y., Idzik, M., Ignatenko, A., Ignatov, F., Ikeda, H., Ikematsu, K., Ilicheva, T., Imbault, D., Imhof, A., Incagli, M., Ingbir, R., Inoue, H., Inoue, Y., Introzzi, G., Ioakeimidi, K., Ishihara, S., Ishikawa, A., Ishikawa, T., Issakov, V., Ito, K., Ivanov, V. V., Ivanov, V., Ivanyushenkov, Y., Iwasaki, M., Iwashita, Y., Jackson, D., Jackson, F., Jacobsen, B., Jaganathan, R., Jamison, S., Janssen, M. E., Jaramillo-Echeverria, R., Jaros, J., Jauffret, C., Jawale, S. B., Jeans, D., Jedziniak, R., Jeffery, B., Jehanno, D., Jenner, L. J., Jensen, C., Jensen, D. R., Jiang, H., Jiang, X. M., Jimbo, M., Jin, S., Jobe, R. K., Johnson, A., Johnson, E., Johnson, M., Johnston, M., Joireman, P., Jokic, S., Jones, J., Jones, R. M., Jongewaard, E., Jönsson, L., Joshi, G., Joshi, S. 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M., Zhou, F., Zhou, S., Zhu, S. H., Zhu, X. W., Zhukov, V., Zimmermann, F., Ziolkowski, M., Zisman, M. S., Zomer, F., Zong, Z. G., Zorba, O., and Zutshi, V.
220. Magnetic modelling of a short-period superconducting helical undulator for the ILC positron source
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Rochford, J., Baynham, E., Bradshaw, T., Brummitt, A., Carr, S., Ivanyushenkov, Y., Clarke, J. A., Malyshev, O. B., Scott, D. J., Ian Bailey, Cooke, P., Dainton, J. B., Malysheva, L., Barber, D. P., and Moortgat-Pick, G. A.
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Physics::Accelerator Physics - Abstract
4 pp. (2006)., A positron source utilising undulators is defined as the baseline option for the International Linear Collider (ILC). The ILC requires a short period undulator, as close to 10mm as possible, that is capable of producing 10 MeV photons. The HeLiCal collaboration within the UK has undertaken a programme to design, develop and produce a prototype undulator. Part of the programme is to perform a magnetic design of the prototype using FEA modelling. The modelling has addressed several issues including the effect of magnetic material for the undulator former, optimal winding geometry, the magnetic flux inside the superconductor and its variation with undulator period and the winding bore. This paper summarizes the results of both the 2d and the 3d magnetic simulations.
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221. Impact of polarized e− and e+ beams at a future Linear Collider and a Z-factory Part II – Physics beyond the Standard Model.
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Moortgat-Pick, G.
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- 2011
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222. Discriminating Z′ from anomalous trilinear gauge coupling signatures in e + e −→W + W − at ILC with polarized beams
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N. Paver, Per Osland, V. V. Andreev, Gudrid Moortgat-Pick, A. A. Pankov, Andreev, V. V., Moortgat Pick, G., Osland, P., Pankov, A. A., and Paver, Nello
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Physics ,Coupling ,Gauge boson ,Particle physics ,gauge boson ,Z' model ,Large Hadron Collider ,Physics and Astronomy (miscellaneous) ,International Linear Collider ,Physics beyond the Standard Model ,High Energy Physics::Phenomenology ,FOS: Physical sciences ,Observable ,Polarization (waves) ,polarized beams ,High Energy Physics - Phenomenology ,High Energy Physics - Phenomenology (hep-ph) ,Engineering (miscellaneous) ,Particle Physics - Phenomenology ,Boson - Abstract
New heavy neutral gauge bosons Z' are predicted by many models of physics beyond the Standard Model. It is quite possible that Z's are heavy enough to lie beyond the discovery reach of the CERN Large Hadron Collider LHC, in which case only indirect signatures of Z' exchanges may emerge at future colliders, through deviations of the measured cross sections from the Standard Model predictions. We discuss in this context the foreseeable sensitivity to Z's of W^\pm-pair production cross sections at the e^+e^- International Linear Collider (ILC), especially as regards the potential of distinguishing observable effects of the Z' from analogous ones due to competitor models with anomalous trilinear gauge couplings (AGC) that can lead to the same or similar new physics experimental signatures at the ILC. The sensitivity of the ILC for probing the Z-Z' mixing and its capability to distinguish these two new physics scenarios is substantially enhanced when the polarization of the initial beams and the produced W^\pm bosons are considered. A model independent analysis of the Z' effects in the process e^+e^- \to W^+W^- allows to differentiate the full class of vector Z' models from those with anomalous trilinear gauge couplings, with one notable exception: the sequential SM (SSM)-like models can in this process not be distinguished from anomalous gauge couplings. Results of model dependent analysis of a specific Z' are expressed in terms of discovery and identification reaches on the Z-Z' mixing angle and the Z' mass., Comment: 33 pages; v2: version to appear in EPJC
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- 2012
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223. Physics at the [Formula: see text] linear collider.
- Author
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Moortgat-Pick G, Baer H, Battaglia M, Belanger G, Fujii K, Kalinowski J, Heinemeyer S, Kiyo Y, Olive K, Simon F, Uwer P, Wackeroth D, Zerwas PM, Arbey A, Asano M, Bagger J, Bechtle P, Bharucha A, Brau J, Brümmer F, Choi SY, Denner A, Desch K, Dittmaier S, Ellwanger U, Englert C, Freitas A, Ginzburg I, Godfrey S, Greiner N, Grojean C, Grünewald M, Heisig J, Höcker A, Kanemura S, Kawagoe K, Kogler R, Krawczyk M, Kronfeld AS, Kroseberg J, Liebler S, List J, Mahmoudi F, Mambrini Y, Matsumoto S, Mnich J, Mönig K, Mühlleitner MM, Pöschl R, Porod W, Porto S, Rolbiecki K, Schmitt M, Serpico P, Stanitzki M, Stål O, Stefaniak T, Stöckinger D, Weiglein G, Wilson GW, Zeune L, Moortgat F, Xella S, Bagger J, Brau J, Ellis J, Kawagoe K, Komamiya S, Kronfeld AS, Mnich J, Peskin M, Schlatter D, Wagner A, and Yamamoto H
- Abstract
A comprehensive review of physics at an [Formula: see text] linear collider in the energy range of [Formula: see text] GeV-3 TeV is presented in view of recent and expected LHC results, experiments from low-energy as well as astroparticle physics. The report focusses in particular on Higgs-boson, top-quark and electroweak precision physics, but also discusses several models of beyond the standard model physics such as supersymmetry, little Higgs models and extra gauge bosons. The connection to cosmology has been analysed as well.
- Published
- 2015
- Full Text
- View/download PDF
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