论文标题

零偏度的广义Parton分布

Generalized parton distributions at zero skewness

论文作者

Hashamipour, Hadi, Goharipour, Muhammad, Azizi, K., Goloskokov, S. V.

论文摘要

通过同时分析所有可用的实验数据,我们对零偏度的不确定性及其不确定性及其不确定性及其不确定性及其不确定性进行了新的确定,这是通过对所有可用的实验数据的分析,电磁形式(FFS),核子电荷和磁性RADII,Proton Axial FFS(affs and affs and gide and stracts)(WAC)和散布(WAC)(WAC)(WAC)(WAC)(WAC)(WACS)杂交(WAC)(WAC)的第一张杂货(WAC)(WAC)这些数据之间是否存在任何张力。这可以被视为对$ξ= 0 $在迄今为止执行的最全面的GPD分析。我们表明,这样的分析提供了三种GPD的同时确定,即$ h^q $,$ \ widetilde {h}^q $和$ e^q $,也考虑到海Quark的贡献。结果,我们发现将WACS和AFF数据包含在动量转移平方$ q^2 = -t $的较大值中,可以对GPDS施加新的约束,并在某些情况下会大大更改它们。我们表明,WACS和质子磁性颜色尺寸($ g_m^p $)数据之间存在相当大的张力,尤其是在$ -T $的较大值下。但是,我们表明,使用提取的GPD计算的重力FF $ M_2 $和质子总角动量$ J^p $与Light-Cone QCD SUM规则(LCSR)和lattice QCD的预测相对较好,并在考虑海上QUARK贡献时进行了预测,并在考虑了WACS和$ G_M^pdation中,并包括$ g_m^p Data。

We present a new determination of the generalized parton distributions (GPDs) with their uncertainties at zero skewness, $ ξ=0 $, through a simultaneous analysis of all available experimental data of the nucleon electromagnetic form factors (FFs), nucleon charge and magnetic radii, proton axial FFs (AFFs) and wide-angle Compton scattering (WACS) cross sections for the first time, and we investigate whether there is any tension between these data. This can be considered the most comprehensive analysis of GPDs at $ ξ=0 $ performed so far. We show that such an analysis provides the simultaneous determination of three kinds of GPDs, namely $ H^q $, $ \widetilde{H}^q $ and $ E^q $, considering also the sea-quark contributions. As a result, we find that the inclusion of the WACS and AFF data at larger values of the momentum transfer squared $ Q^2=-t $ can put new constraints on GPDs and change them drastically in some cases. We show that there is a considerable tension between the WACS and the proton magnetic form factor ($ G_M^p $) data, especially at larger values of $ -t $. However, we indicate that the results for the gravitational FF $ M_2 $ and the proton total angular momentum $ J^p $ calculated using the extracted GPDs are in relatively good agreement with the light-cone QCD sum rules (LCSRs) and lattice QCD predictions when the sea-quark contributions are considered and both WACS and $ G_M^p $ data are included in the analyses simultaneously.

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