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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Measurement of double-spin asymmetries associated with deeply virtual Compton scattering on a transversely polarized hydrogen target
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Measurement of double-spin asymmetries associated with deeply virtual Compton scattering on a transversely polarized hydrogen target

机译:测量与横向极化氢靶上的深虚拟康普顿散射有关的双自旋不对称性

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摘要

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.
机译:相对于目标偏振与束螺旋度和束电荷的乘积,以及相对于目标偏振与束螺旋度的乘积,测量从横向极化氢靶产生的实际光子专有电产生中的双自旋不对称性。不对称性是由深度虚拟的康普顿散射过程及其对Bethe-Heitler过程的干扰引起的。它们与康普顿形状因数的相同组合的实部有关,该实部与通过虚部确定先前发布的横向目标单轴不对称性有关。发现双旋转不对称的结果在测量不确定性内与零兼容,并且与唯一可用的基于GPD的计算的预测不兼容。

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