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Measurement of Compton Scattering at MAMI for the Extraction of the Electric and Magnetic Polarizabilities of the Proton.

Authors :
Mornacchi E
Martel PP
Abt S
Achenbach P
Adlarson P
Afzal F
Ahmed Z
Annand JRM
Arends HJ
Bashkanov M
Beck R
Biroth M
Borisov N
Braghieri A
Briscoe WJ
Cividini F
Collicott C
Costanza S
Denig A
Dolzhikov AS
Downie EJ
Drexler P
Fegan S
Gardner S
Ghosal D
Glazier DI
Gorodnov I
Gradl W
Günther M
Gurevich D
Heijkenskjöld L
Hornidge D
Huber GM
Käser A
Kashevarov VL
Kay SJD
Korolija M
Krusche B
Lazarev A
Livingston K
Lutterer S
MacGregor IJD
Manley DM
Miskimen R
Mocanu M
Mullen C
Neganov A
Neiser A
Ostrick M
Paudyal D
Pedroni P
Powell A
Rostomyan T
Sokhoyan V
Spieker K
Steffen O
Strakovsky I
Strub T
Thiel M
Thomas A
Usov YA
Wagner S
Watts DP
Werthmüller D
Wettig J
Wolfes M
Zachariou N
Source :
Physical review letters [Phys Rev Lett] 2022 Apr 01; Vol. 128 (13), pp. 132503.
Publication Year :
2022

Abstract

A precise measurement of the differential cross sections dσ/dΩ and the linearly polarized photon beam asymmetry Σ_{3} for Compton scattering on the proton below pion threshold has been performed with a tagged photon beam and almost 4π detector at the Mainz Microtron. The incident photons were produced by the recently upgraded Glasgow-Mainz photon tagging facility and impinged on a cryogenic liquid hydrogen target, with the scattered photons detected in the Crystal Ball/TAPS setup. Using the highest statistics Compton scattering data ever measured on the proton along with two effective field theories (both covariant baryon and heavy-baryon) and one fixed-t dispersion relation model, constraining the fits with the Baldin sum rule, we have obtained the proton electric and magnetic polarizabilities with unprecedented precision: α_{E1}=10.99±0.16±0.47±0.17±0.34, β_{M1}=3.14±0.21±0.24±0.20±0.35; in units of 10^{-4}  fm^{3} where the errors are statistical, systematic, spin polarizability dependent, and model dependent.

Details

Language :
English
ISSN :
1079-7114
Volume :
128
Issue :
13
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
35426697
Full Text :
https://doi.org/10.1103/PhysRevLett.128.132503