Status on lattice calculations of the proton spin decomposition

Keh-Fei Liu
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Abstract

Lattice calculations of the proton spin components is reviewed. The lattice results of the quark spin from the axial-vector current matrix element at ∼ 0.3−0.4 is smaller than those from the constituent quark models. This is largely due to the fact that the vacuum polarization contribution from the disconnected insertion is negative. Its connection with the anomalous Ward identity is clarified and verified numerically. This resolves the contentious issue in the “proton spin crisis.” The glue spin and angular momentum are found to be large and there is notable contribution from the quark orbital angular momentum. Renormalization, mixing, and normalization of the quark and glue angular momenta are discussed. With sufficient precision, they can be compared with more precise experimental measurements when the electron-ion collider facility is available.

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质子自旋分解的晶格计算现状
对质子自旋成分的晶格计算进行了回顾。轴向矢量电流矩阵元素在 ∼ 0.3-0.4 的夸克自旋晶格计算结果小于组成夸克模型的结果。这主要是由于断开插入的真空极化贡献是负的。它与反常沃德特性的联系得到了澄清和数值验证。这解决了 "质子自旋危机 "中的争议问题。研究发现胶自旋和角动量很大,夸克轨道角动量也有显著贡献。讨论了夸克和胶水角动量的重正化、混合和归一化。如果有足够的精度,当电子-离子对撞机设施可用时,它们可以与更精确的实验测量进行比较。
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