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An experimental program with high duty-cycle polarized and unpolarized positron beams at Jefferson Lab

  • A. Accardi
  • , A. Afanasev
  • , I. Albayrak
  • , S. F. Ali
  • , M. Amaryan
  • , J. R.M. Annand
  • , J. Arrington
  • , A. Asaturyan
  • , H. Atac
  • , H. Avakian
  • , T. Averett
  • , C. Ayerbe Gayoso
  • , X. Bai
  • , L. Barion
  • , M. Battaglieri
  • , V. Bellini
  • , R. Beminiwattha
  • , F. Benmokhtar
  • , V. V. Berdnikov
  • , J. C. Bernauer
  • V. Bertone, A. Bianconi, A. Biselli, P. Bisio, P. Blunden, M. Boer, M. Bondì, K. T. Brinkmann, W. J. Briscoe, V. Burkert, T. Cao, A. Camsonne, R. Capobianco, L. Cardman, M. Carmignotto, M. Caudron, L. Causse, A. Celentano, P. Chatagnon, J. P. Chen, T. Chetry, G. Ciullo, E. Cline, P. L. Cole, M. Contalbrigo, G. Costantini, A. D’Angelo, L. Darmé, D. Day, M. Defurne, M. De Napoli, A. Deur, R. De Vita, N. D’Hose, S. Diehl, M. Diefenthaler, B. Dongwi, R. Dupré, H. Dutrieux, D. Dutta, M. Ehrhart, L. El Fassi, L. Elouadrhiri, R. Ent, J. Erler, I. P. Fernando, A. Filippi, D. Flay, T. Forest, E. Fuchey, S. Fucini, Y. Furletova, H. Gao, D. Gaskell, A. Gasparian, T. Gautam, F. X. Girod, K. Gnanvo, J. Grames, G. N. Grauvogel, P. Gueye, M. Guidal, S. Habet, T. J. Hague, D. J. Hamilton, O. Hansen, D. Hasell, M. Hattawy, D. W. Higinbotham, A. Hobart, T. Horn, C. E. Hyde, H. Ibrahim, A. Ilyichev, A. Italiano, K. Joo, S. J. Joosten, V. Khachatryan, N. Kalantarians, G. Kalicy, B. Karky, D. Keller, C. Keppel, M. Kerver, M. Khandaker, A. Kim, J. Kim, P. M. King, E. Kinney, V. Klimenko, H. S. Ko, M. Kohl, V. Kozhuharov, B. T. Kriesten, G. Krnjaic, V. Kubarovsky, T. Kutz, L. Lanza, M. Leali, P. Lenisa, N. Liyanage, Q. Liu, S. Liuti, J. Mammei, S. Mantry, D. Marchand, P. Markowitz, L. Marsicano, V. Mascagna, M. Mazouz, M. McCaughan, B. McKinnon, D. McNulty, W. Melnitchouk, A. Metz, Z. E. Meziani, S. Migliorati, M. Mihovilovič, R. Milner, A. Mkrtchyan, H. Mkrtchyan, A. Movsisyan, H. Moutarde, M. Muhoza, C. Muñoz Camacho, J. Murphy, P. Nadel-Turoński, E. Nardi, J. Nazeer, S. Niccolai, G. Niculescu, R. Novotny, J. F. Owens, M. Paolone, L. Pappalardo, R. Paremuzyan, B. Pasquini, E. Pasyuk, T. Patel, I. Pegg, C. Peng, D. Perera, M. Poelker, K. Price, A. J.R. Puckett, M. Raggi, N. Randazzo, M. N.H. Rashad, M. Rathnayake, B. Raue, P. E. Reimer, M. Rinaldi, A. Rizzo, Y. Roblin, J. Roche, O. Rondon-Aramayo, F. Sabatié, G. Salmè, E. Santopinto, R. Santos Estrada, B. Sawatzky, A. Schmidt, P. Schweitzer, S. Scopetta, V. Sergeyeva, M. Shabestari, A. Shahinyan, Y. Sharabian, S. Širca, E. S. Smith, D. Sokhan, A. Somov, N. Sparveris, M. Spata, H. Spiesberger, M. Spreafico, S. Stepanyan, P. Stoler, I. Strakovsky, R. Suleiman, M. Suresh, P. Sznajder, H. Szumila-Vance, V. Tadevosyan, A. S. Tadepalli, A. W. Thomas, M. Tiefenback, R. Trotta, M. Ungaro, P. Valente, M. Vanderhaeghen, L. Venturelli, H. Voskanyan, E. Voutier, B. Wojtsekhowski, M. H. Wood, S. Wood, J. Xie, W. Xiong, Z. Ye, M. Yurov, H. G. Zaunick, S. Zhamkochyan, J. Zhang, S. Zhang, S. Zhao, Z. W. Zhao, X. Zheng, J. Zhou, C. Zorn
  • Thomas Jefferson National Accelerator Facility
  • Hampton University
  • George Washington University
  • Akdeniz University
  • Catholic University of America
  • Old Dominion University
  • University of Glasgow
  • Lawrence Berkeley National Laboratory
  • A. Alikhanian Yerevan Institute of Physics
  • Temple University
  • College of William and Mary
  • Mississippi State University
  • University of Virginia
  • National Institute for Nuclear Physics
  • Louisiana Tech University
  • Duquesne University
  • Université Paris-Saclay
  • University of Brescia
  • Fairfield University
  • University of Genoa
  • University of Manitoba
  • University of New Hampshire
  • Justus Liebig University Giessen
  • University of Connecticut
  • University of Ferrara
  • Stony Brook University
  • Lamar University
  • University of Rome Tor Vergata
  • Johannes Gutenberg University Mainz
  • Idaho State University
  • University of Perugia
  • Duke University
  • North Carolina A&T State University
  • Michigan State University
  • Massachusetts Institute of Technology
  • Cairo University
  • Belarusian State University
  • Argonne National Laboratory
  • Triangle Universities Nuclear Laboratory
  • Virginia Union University
  • Energy Systems
  • Ohio University
  • University of Colorado Boulder
  • Sofia University St. Kliment Ohridski
  • Fermi National Accelerator Laboratory
  • The University of Chicago
  • University of North Georgia
  • Florida International University
  • University of Insubria
  • University of Monastir
  • University of Ljubljana
  • James Madison University
  • Florida State University
  • New Mexico State University
  • University of Pavia
  • University of Rome La Sapienza
  • University West of Florida
  • National Centre for Nuclear Research
  • Adelaide University
  • Canisius College
  • Syracuse University
  • Tsinghua University
  • Los Alamos National Laboratory

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

Positron beams, both polarized and unpolarized, are identified as important ingredients for the experimental programs at the next generation of lepton accelerators. In the context of the hadronic physics program at Jefferson Lab (JLab), positron beams are complementary, even essential, tools for a precise understanding of the electromagnetic structure of nucleons and nuclei, in both the elastic and deep-inelastic regimes. For instance, elastic scattering of polarized and unpolarized electrons and positrons from the nucleon enables a model independent determination of its electromagnetic form factors. Also, the deeply-virtual scattering of polarized and unpolarized electrons and positrons allows unambiguous separation of the different contributions to the cross section of the lepto-production of photons and of lepton-pairs, enabling an accurate determination of the nucleons and nuclei generalized parton distributions, and providing an access to the gravitational form factors of the energy-momentum tensor. Furthermore, positron beams offer the possibility of alternative tests of the Standard Model of particle physics through the search of a dark photon, the precise measurement of electroweak couplings, and the investigation of charged lepton flavor violation. This document discusses the perspectives of an experimental program with high duty-cycle positron beams at JLab.

Original languageEnglish
Article number261
JournalEuropean Physical Journal A
Volume57
Issue number8
DOIs
StatePublished - Aug 2021

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