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Exploring the Structure of the Bound Proton with Deeply Virtual Compton Scattering.

Authors :
Hattawy M
Baltzell NA
Dupré R
Bültmann S
De Vita R
El Alaoui A
El Fassi L
Egiyan H
Girod FX
Guidal M
Hafidi K
Jenkins D
Liuti S
Perrin Y
Stepanyan S
Torayev B
Voutier E
Adhikari S
Angelini G
Ayerbe Gayoso C
Barion L
Battaglieri M
Bedlinskiy I
Biselli AS
Bossù F
Brooks W
Cao F
Carman DS
Celentano A
Chatagnon P
Chetry T
Ciullo G
Clark L
Cole PL
Contalbrigo M
Crede V
D'Angelo A
Dashyan N
De Sanctis E
Defurne M
Deur A
Diehl S
Djalali C
Ehrhart M
Eugenio P
Fegan S
Filippi A
Forest TA
Fradi A
Garçon M
Gavalian G
Gevorgyan N
Gilfoyle GP
Giovanetti KL
Golovatch E
Gothe RW
Griffioen KA
Harrison N
Hauenstein F
Hayward TB
Heddle D
Hicks K
Holtrop M
Ilieva Y
Ireland DG
Isupov EL
Jo HS
Johnston S
Keller D
Khachatryan G
Khachatryan M
Khanal A
Khandaker M
Kim CW
Kim W
Klein FJ
Kubarovsky V
Kuhn SE
Lanza L
L Kabir M
Lenisa P
Livingston K
MacGregor IJD
Marchand D
Markov N
Mayer M
McKinnon B
Meziani ZE
Mineeva T
Mirazita M
Montgomery RA
Munoz Camacho C
Nadel-Turonski P
Niccolai S
Ostrovidov AI
Pappalardo LL
Paremuzyan R
Pasyuk E
Pogorelko O
Poudel J
Prok Y
Protopopescu D
Ripani M
Riser D
Rizzo A
Rosner G
Rossi P
Sabatié F
Salgado C
Schumacher RA
Sharabian YG
Skorodumina I
Sokhan D
Soto O
Sparveris N
Strauch S
Taiuti M
Tan JA
Tyler N
Ungaro M
Voskanyan H
Wang R
Watts DP
Wei X
Weinstein LB
Wood MH
Zachariou N
Zhang J
Zhao ZW
Source :
Physical review letters [Phys Rev Lett] 2019 Jul 19; Vol. 123 (3), pp. 032502.
Publication Year :
2019

Abstract

In the past two decades, deeply virtual Compton scattering of electrons has been successfully used to advance our knowledge of the partonic structure of the free proton and investigate correlations between the transverse position and the longitudinal momentum of quarks inside the nucleon. Meanwhile, the structure of bound nucleons in nuclei has been studied in inclusive deep-inelastic lepton scattering experiments off nuclear targets, showing a significant difference in longitudinal momentum distribution of quarks inside the bound nucleon, known as the EMC effect. In this Letter, we report the first beam spin asymmetry (BSA) measurement of exclusive deeply virtual Compton scattering off a proton bound in ^{4}He. The data used here were accumulated using a 6 GeV longitudinally polarized electron beam incident on a pressurized ^{4}He gaseous target placed within the CLAS spectrometer in Hall-B at the Thomas Jefferson National Accelerator Facility. The azimuthal angle (ϕ) dependence of the BSA was studied in a wide range of virtual photon and scattered proton kinematics. The Q^{2}, x_{B}, and t dependencies of the BSA on the bound proton are compared with those on the free proton. In the whole kinematical region of our measurements, the BSA on the bound proton is smaller by 20% to 40%, indicating possible medium modification of its partonic structure.

Details

Language :
English
ISSN :
1079-7114
Volume :
123
Issue :
3
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
31386486
Full Text :
https://doi.org/10.1103/PhysRevLett.123.032502