Non-local Nucleon Matrix Elements in the Rest Frame

Joe Karpie, Christopher Monahan, Anatoly Radyushkin
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Abstract

Extracting parton structure from lattice quantum chromodynamics (QCD) calculations requires studying the coordinate scale $z_3$ dependence of the matrix elements of bilocal operators. The most significant contribution comes from the $z_3$ dependence induced by ultraviolet (UV) renormalization of the Wilson line. We demonstrate that the next-to-leading order perturbative calculations of the renormalization factor can describe, to a few percent accuracy, the lattice QCD rest frame matrix elements with separations up to distances of 0.6~fm on multiple lattice spacings. The residual discrepancies can be modeled by a leading effect from the structure of the nucleon.
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静止框架中的非局部核子矩阵元素
从格子量子色动力学(QCD)计算中提取粒子结构需要研究双局域算子矩阵元素的坐标尺度 $z_3$ 依赖性。最重要的贡献来自于威尔逊线的紫外线(UV)重正化所引起的 z_3$ 相关性。我们证明了重正化因子的次先导阶微扰计算能够以百分之几的精度描述多个晶格间距上分离达 0.6~fm 的晶格 QCD 静止帧矩阵元素。残余差异可以用核子结构的前导效应来模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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