Accès ouvert déclaré
2020
preprint
e$^+$@JLab White Paper: An Experimental Program with Positron Beams at Jefferson Lab
Alberto Accardi, Andrei V. Afanasev, I. Albayrak, S.F. Ali, M. J. Amaryan, J. R. M. Annand, J. Arrington, A. Asaturyan, Harut Avakian, Todd D. Averett, C. Ayerbe Gayoso, L. Barion, M. Battaglieri, Vincenzo Bellini, F. Benmokhtar, Vladimir V. Berdnikov, J. C. Bernauer, A. Bianconi, A. S. Biselli, M. Boër, M. Bondí, K.-Th. Brinkmann, W. J. Briscoe, V. D. Burkert, T. Cao, A. Camsonne, R. Capobianco, Lawrence S. Cardman, M. Carmignotto, M. Caudron, L. Causse, A. Celentano, P. Chatagnon, T. Chetry, G. Ciullo, Ethan W. Cline, P. L. Cole, M. Contalbrigo, G. Costantini, Annalisa D'Angelo, Donal B. Day, M. Defurne, M. De Napoli, A. Deur, R. De Vita, Nicole d’Hose, S. Diehl, M. Diefenthaler, B. Dongwi, R. Dupré, D. Dutta, M. Ehrhart, L. El-Fassi, L. Elouadrhiri, R. Ent, Jens Erler, I. P. Fernando, A. Filippi, D. Flay, T. A. Forest, E. Fuchey, Sara Fucini, Yulia Furletova, H. Gao, David J. Gaskell, A. Gasparian, T. Gautam, F. X. Girod, Joseph Grames, P. Guèye, M. Guidal, S. Habet, D. Hamilton, O. Hansen, D. Hasell, M. Hattawy, Douglas W. Higinbotham, Adam Hobart, Tanja Horn, C. E. Hyde-Wright, Hassan Fathy Ibrahim, A. Italiano, K. Joo, S. Joosten, Narbe Kalantarians, G. Kalicy, D. Keller, C. Keppel, M. Kerver, A. Kim, J. Kim, Paul M. King, Edward R. Kinney, V. Klimenko, H. S. Ko, M. Köhl, V. Kozhuharov, V. Kubarovsky, T. Kutz, Lucilla Lanza, M. Leali, P. Lenisa, N. Liyanage, Q. Liu, Simonetta Liuti, J. Mammei, Sonny Mantry, D. Marchand, P. Markowitz, L. Marsicano, V. Mascagna, M. Mazouz, M. McCaughan, B. McKinnon, D. McNulty, Wally Melnitchouk, Z.-E. Meziani, M. Mihovilovič, R. Milner, A. R. MKRTCHYAN, Hamlet Mkrtchyan, Aram Movsisyan, M. Muhoza, C. Muñoz Camacho, James J. Murphy, P. Nadel-Turoński, J. Nazeer, S. Niccolai, Gabriel Niculescu, R. Novotny, M. Paolone, Luciano Libero Pappalardo, R. Paremuzyan, E. Pasyuk, Tanvi Patel, Ian L. Pegg, C. Peng, D. Perera, M. Poelker, K. Price, A. J. R. Puckett, Mauro Raggi, Nunzio Randazzo, M. N. H. Rashad, Malinga Rathnayake, Brian A. Raue, Paul E Reimer, Matteo Rinaldi, Alessandro Rizzo, Julie Roche, Guy Ron, Giovanni Salmè, E. Santopinto, R. Santos Estrada, Brad Sawatzky, Axel Schmidt, P. Schweitzer, Sergio Scopetta, Victoria Sergeyeva, M. Shabestari, Albert Shahinyan, Y. G. Sharabian, Simon Širca, Elton S. Smith, D. Sokhan, Alexander Somov, N. Sparveris, M. Spata, Stepan Stepanyan, P. Stoler, Igor I. Strakovsky, Raid M. Suleiman, M. Suresh, Holly Szumila-Vance, V. Tadevosyan, Arun S. Tadepalli, Michael G. Tiefenback, M. Ungaro, Paolo Valente, L. Venturelli, H. Voskanyan, Eric Voutier, B. Wojtsekhowski, S. A. Wood, Ju-Jun Xie, Z. Ye, M. Yurov, H.-G. Zaunick, S. Zhamkochyan, J. Zhang, S. Zhang, Shengying Zhao, Binshan Zhao, Xiaochao Zheng, C. Zorn
8Citations signalées, ce qui n’est pas une note de qualité
0Institutions déclarées
0Pays d’affiliation déclarés
Le résumé fourni par la source
Positron beams, both polarized and unpolarized, are identified as essential ingredients for the experimental program at the next generation of lepton accelerators. In the context of the Hadronic Physics program at the Jefferson Laboratory (JLab), positron beams are complementary, even essential, tools for a precise understanding of the electromagnetic structure of the nucleon, in both the elastic and the deep-inelastic regimes. For instance, elastic scattering of (un)polarized electrons and positrons off the nucleon allows for a model independent determination of the electromagnetic form factors of the nucleon. Also, the deeply virtual Compton scattering of (un)polarized electrons and positrons allows us to separate unambiguously the different contributions to the cross section of the lepto-production of photons, enabling an accurate determination of the nucleon Generalized Parton Distributions (GPDs), and providing an access to its Gravitational Form Factors. Furthermore, positron beams offer the possibility of alternative tests of the Standard Model through the search of a dark photon, the precise measurement of electroweak couplings, or the investigation of lepton flavor violation. This white paper discusses the perspectives of an experimental program with positron beams at JLab.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
Aucun DOI disponible pour le contrôle Crossref.
Les sujets associés
Particle physics theoretical and experimental studiesParticle Accelerators and Free-Electron LasersDark Matter and Cosmic Phenomena