论文标题

重型夸克对生产的重新归一化量表设置,$ e^+e^ - $ $ nihilation在阈值区域附近

Renormalization Scale Setting for Heavy Quark Pair Production in $e^+e^-$ Annihilation near the Threshold Region

论文作者

Wang, Sheng-Quan, Brodsky, Stanley J., Wu, Xing-Gang, Di Giustino, Leonardo, Shen, Jian-Ming

论文摘要

$ e^+e^ - $ nihihitation中的重型效率对生产是强子物理学中的一个基本过程,并且对各种现象引起了极大的兴趣。在本文中,我们将运用最大保密性(PMC)的原则来对这些过程进行全面分析。 PMC提供了一种系统的,明确的方法,用于确定单尺度和多尺度应用的QCD耦合常数的重新归一化量表。由此产生的预测消除了任何重新归一化的方案和规模的歧义,消除了阶乘肾上腺差异,并与重新归一化组的要求一致。值得注意的是,通过使用PMC在阈值区域附近使用PMC来确定两个截然不同的尺度。一个量表是输入硬虚拟校正的费米昂质量$ m_f $的顺序,另一个比例为$ v \,m_f $的顺序,其中$ v $是进入库仑撤销幅度的夸克速度。 PMC量表产生了正确的身体行为,并反映了QCD(QED)过程的传播胶子(光子)的虚拟性。此外,我们证明了从QCD到QED的PMC量表设置的一致性。展示了Abelian明确的Gell-Mann-Low与PMC尺度设定方法之间的完美一致性。

Heavy fermion pair production in $e^+e^-$ annihilation is a fundamental process in hadron physics and is of considerable interest for various phenomena. In this paper, we will apply the Principle of Maximum Conformality (PMC) to provide a comprehensive analysis of these processes. The PMC provides a systematic, unambiguous method for determining the renormalization scales of the QCD coupling constant for single-scale and multiple-scale applications. The resulting predictions eliminate any renormalization scheme-and-scale ambiguities, eliminate the factorial renormalon divergences, and are consistent with the requirements of the renormalization group. It is remarkable that two distinctly different scales are determined by using the PMC for heavy fermion pair production near the threshold region. One scale is the order of the fermion mass $m_f$, which enters the hard virtual corrections, and the other scale is of order $ v\,m_f$, where $v$ is the quark velocity, which enters the Coulomb rescattering amplitude. The PMC scales yield the correct physical behavior and reflect the virtuality of the propagating gluons (photons) for the QCD (QED) processes. Moreover, we demonstrate the consistency of PMC scale setting from QCD to QED. Perfect agreement between the Abelian unambiguous Gell-Mann-Low and the PMC scale-setting methods in the limit of zero number of colors is demonstrated.

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