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Precision Measurement of the Beam-Normal Single-Spin Asymmetry in Forward-Angle Elastic Electron-Proton Scattering.

Authors :
Androić D
Armstrong DS
Asaturyan A
Bartlett K
Beaufait J
Beminiwattha RS
Benesch J
Benmokhtar F
Birchall J
Carlini RD
Cornejo JC
Dusa SC
Dalton MM
Davis CA
Deconinck W
Dowd JF
Dunne JA
Dutta D
Duvall WS
Elaasar M
Falk WR
Finn JM
Forest T
Gal C
Gaskell D
Gericke MTW
Grames J
Gray VM
Grimm K
Guo F
Hoskins JR
Jones D
Jones MK
Jones RT
Kargiantoulakis M
King PM
Korkmaz E
Kowalski S
Leacock J
Leckey JP
Lee AR
Lee JH
Lee L
MacEwan S
Mack D
Magee JA
Mahurin R
Mammei J
Martin JW
McHugh MJ
Meekins D
Mei J
Mesick KE
Michaels R
Micherdzinska A
Mkrtchyan A
Mkrtchyan H
Morgan N
Narayan A
Ndukum LZ
Nelyubin V
Nuruzzaman
van Oers WTH
Owen VF
Page SA
Pan J
Paschke KD
Phillips SK
Pitt ML
Radloff RW
Rajotte JF
Ramsay WD
Roche J
Sawatzky B
Seva T
Shabestari MH
Silwal R
Simicevic N
Smith GR
Solvignon P
Spayde DT
Subedi A
Subedi R
Suleiman R
Tadevosyan V
Tobias WA
Tvaskis V
Waidyawansa B
Wang P
Wells SP
Wood SA
Yang S
Zang P
Zhamkochyan S
Source :
Physical review letters [Phys Rev Lett] 2020 Sep 11; Vol. 125 (11), pp. 112502.
Publication Year :
2020

Abstract

A beam-normal single-spin asymmetry generated in the scattering of transversely polarized electrons from unpolarized nucleons is an observable related to the imaginary part of the two-photon exchange process. We report a 2% precision measurement of the beam-normal single-spin asymmetry in elastic electron-proton scattering with a mean scattering angle of θ_{lab}=7.9° and a mean energy of 1.149 GeV. The asymmetry result is B_{n}=-5.194±0.067(stat)±0.082 (syst) ppm. This is the most precise measurement of this quantity available to date and therefore provides a stringent test of two-photon exchange models at far-forward scattering angles (θ_{lab}→0) where they should be most reliable.

Details

Language :
English
ISSN :
1079-7114
Volume :
125
Issue :
11
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
32976004
Full Text :
https://doi.org/10.1103/PhysRevLett.125.112502