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Towards a resolution of the proton form factor problem: new electron and positron scattering data.

Authors :
Adikaram D
Rimal D
Weinstein LB
Raue B
Khetarpal P
Bennett RP
Arrington J
Brooks WK
Adhikari KP
Afanasev AV
Amaryan MJ
Anderson MD
Anefalos Pereira S
Avakian H
Ball J
Battaglieri M
Bedlinskiy I
Biselli AS
Bono J
Boiarinov S
Briscoe WJ
Burkert VD
Carman DS
Careccia S
Celentano A
Chandavar S
Charles G
Colaneri L
Cole PL
Contalbrigo M
Crede V
D'Angelo A
Dashyan N
De Vita R
De Sanctis E
Deur A
Djalali C
Dodge GE
Dupre R
Egiyan H
El Alaoui A
El Fassi L
Elouadrhiri L
Eugenio P
Fedotov G
Fegan S
Filippi A
Fleming JA
Fradi A
Garillon B
Gilfoyle GP
Giovanetti KL
Girod FX
Goetz JT
Gohn W
Golovatch E
Gothe RW
Griffioen KA
Guegan B
Guidal M
Guo L
Hafidi K
Hakobyan H
Hanretty C
Harrison N
Hattawy M
Hicks K
Holtrop M
Hughes SM
Hyde CE
Ilieva Y
Ireland DG
Ishkhanov BS
Jenkins D
Jiang H
Jo HS
Joo K
Joosten S
Kalantarians N
Keller D
Khandaker M
Kim A
Kim W
Klein A
Klein FJ
Koirala S
Kubarovsky V
Kuhn SE
Livingston K
Lu HY
MacGregor IJ
Markov N
Mattione P
Mayer M
McKinnon B
Mestayer MD
Meyer CA
Mirazita M
Mokeev V
Montgomery RA
Moody CI
Moutarde H
Movsisyan A
Camacho CM
Nadel-Turonski P
Niccolai S
Niculescu G
Osipenko M
Ostrovidov AI
Park K
Pasyuk E
Peña C
Pisano S
Pogorelko O
Price JW
Procureur S
Prok Y
Protopopescu D
Puckett AJ
Ripani M
Rizzo A
Rosner G
Rossi P
Roy P
Sabatié F
Salgado C
Schott D
Schumacher RA
Seder E
Sharabian YG
Simonyan A
Skorodumina I
Smith ES
Smith GD
Sober DI
Sokhan D
Sparveris N
Stepanyan S
Stoler P
Strauch S
Sytnik V
Taiuti M
Tian Y
Trivedi A
Ungaro M
Voskanyan H
Voutier E
Walford NK
Watts DP
Wei X
Wood MH
Zachariou N
Zana L
Zhang J
Zhao ZW
Zonta I
Source :
Physical review letters [Phys Rev Lett] 2015 Feb 13; Vol. 114 (6), pp. 062003. Date of Electronic Publication: 2015 Feb 10.
Publication Year :
2015

Abstract

There is a significant discrepancy between the values of the proton electric form factor, G(E)(p), extracted using unpolarized and polarized electron scattering. Calculations predict that small two-photon exchange (TPE) contributions can significantly affect the extraction of G(E)(p) from the unpolarized electron-proton cross sections. We determined the TPE contribution by measuring the ratio of positron-proton to electron-proton elastic scattering cross sections using a simultaneous, tertiary electron-positron beam incident on a liquid hydrogen target and detecting the scattered particles in the Jefferson Lab CLAS detector. This novel technique allowed us to cover a wide range in virtual photon polarization (ϵ) and momentum transfer (Q(2)) simultaneously, as well as to cancel luminosity-related systematic errors. The cross section ratio increases with decreasing ϵ at Q(2)=1.45  GeV(2). This measurement is consistent with the size of the form factor discrepancy at Q(2)≈1.75  GeV(2) and with hadronic calculations including nucleon and Δ intermediate states, which have been shown to resolve the discrepancy up to 2-3  GeV(2).

Details

Language :
English
ISSN :
1079-7114
Volume :
114
Issue :
6
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
25723209
Full Text :
https://doi.org/10.1103/PhysRevLett.114.062003