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Measurement of double-spin asymmetries associated with deeply virtual Compton scattering on a transversely polarized hydrogen target

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abstract

Double-spin asymmetries in exclusive electroproduction of real photons from a transversely polarized hydrogen target are measured with respect to the product of target polarization with beam helicity and beam charge, and with respect to the product of target polarization with beam helicity alone. The asymmetries arise from the deeply virtual Compton scattering process and its interference with the Bethe--Heitler process. They are related to the real part of the same combination of Compton form factors as that determining the previously published transverse target single-spin asymmetries through the imaginary part. The results for the double-spin asymmetries are found to be compatible with zero within the uncertainties of the measurement, and are not incompatible with the predictions of the only available GPD-based calculation.

fields

nucl-ex 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

Polarized Nuclear DVCS at the EIC

nucl-ex · 2026-06-09 · unverdicted · novelty 4.0

A model for polarized nuclear DVCS on ³He is simulated for 9×166 GeV e³He collisions at the EIC, showing early data enable precise measurements of unpolarized CFF H but polarized tilde H requires substantially more luminosity.

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  • Polarized Nuclear DVCS at the EIC nucl-ex · 2026-06-09 · unverdicted · none · ref 15 · internal anchor

    A model for polarized nuclear DVCS on ³He is simulated for 9×166 GeV e³He collisions at the EIC, showing early data enable precise measurements of unpolarized CFF H but polarized tilde H requires substantially more luminosity.