论文标题

使用直接导数方法从晶格QCD中的Jafe-Manohar轨道角动量

From Ji to Jaffe-Manohar orbital angular momentum in Lattice QCD using a direct derivative method

论文作者

Engelhardt, M., Green, J. R., Hasan, N., Krieg, S., Meinel, S., Negele, J., Pochinsky, A., Syritsyn, S.

论文摘要

基于普遍的横向动量依赖性的Parton分布(GTMD),一种质量QCD方法通过合并直接衍生技术来增强质子的夸克轨道角动量。这种改进消除了一种显着的数值偏差,该偏差遭受了先前研究的结果。特别是,JI夸克轨道角动量获得的值与通过JI的总规则独立获得的值核对,从而验证了GMTD方法。由于GTMDS同时包含有关Quark冲击参数和横向动量的信息,因此它们可以直接评估后者的交叉产品。它们是通过包含威尔逊线的夸克双尾算子的质子矩阵元素来定义的。威尔逊线路径中的选择使人们可以连续从JI到Jaffe-Manohar夸克轨道角动量。与JI夸克轨道角动量相比,后者的幅度显着增强,证实了先前的结果。

A Lattice QCD approach to quark orbital angular momentum in the proton based on generalized transverse momentum-dependent parton distributions (GTMDs) is enhanced methodologically by incorporating a direct derivative technique. This improvement removes a significant numerical bias that had been seen to afflict results of a previous study. In particular, the value obtained for Ji quark orbital angular momentum is reconciled with the one obtained independently via Ji's sum rule, validating the GMTD approach. Since GTMDs simultaneously contain information about the quark impact parameter and transverse momentum, they permit a direct evaluation of the cross product of the latter. They are defined through proton matrix elements of a quark bilocal operator containing a Wilson line; the choice in Wilson line path allows one to continuously interpolate from Ji to Jaffe-Manohar quark orbital angular momentum. The latter is seen to be significantly enhanced in magnitude compared to Ji quark orbital angular momentum, confirming previous results.

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