在全局QCD分析中检验非微扰强子结构的动量依赖性

A. Courtoy, P. Nadolsky
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引用次数: 18

摘要

我们讨论了在大部分子动量分数区域内,对部分子分布函数(pdf)的非微扰QCD预测与高能实验的比较策略。PDF的解析泛函形式不能仅仅基于离散的实验测量来唯一地确定,因为PDF参数化的模拟的数学性质,我们使用基于B\ ezier曲线的表示来证明。对于pdf的x依赖性的非微扰QCD方法的预测应该以一种能够与实验测量进行决定性比较的形式进行。对pdf文件$(1-x)$依赖性的有效幂律的预测可以发挥这一作用。基于夸克计数规则的质子pdf期望值与CT18次至次至领先阶部分子分布所满足的$(1-x)$依赖的有效幂律进行了比较。我们评论了介子中pdf研究的意义,特别是非微扰方法与现象学pdf的比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Testing momentum dependence of the nonperturbative hadron structure in a global QCD analysis
We discuss strategies for comparisons of nonperturbative QCD predictions for parton distribution functions (PDFs) with high-energy experiments in the region of large partonic momentum fractions $x$. Analytic functional forms for PDFs cannot be uniquely determined solely based on discrete experimental measurements because of a mathematical property of mimicry of PDF parametrizations that we prove using a representation based on B\'ezier curves. Predictions of nonperturbative QCD approaches for the $x$ dependence of PDFs instead should be cast in a form that enables decisive comparisons against experimental measurements. Predictions for effective power laws of $(1-x)$ dependence of PDFs may play this role. Expectations for PDFs in a proton based on quark counting rules are compared against the effective power laws of $(1-x)$ dependence satisfied by CT18 next-to-next-to-leading order parton distributions. We comment on implications for studies of PDFs in a pion, in particular on the comparison of nonperturbative approaches with phenomenological PDFs.
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