论文标题

从$β$ function的十种考验到z-pole的$α_s$

From ten-flavor tests of the $β$-function to $α_s$ at the Z-pole

论文作者

Fodor, Zoltán, Holland, Kieran, Kuti, Julius, Wong, Chik Him

论文摘要

在SU(3)彩色量规组的基本表示中,新测试适用于备受讨论的BSM模型的两个$β$ - 功能。在零晶格间距为零的有限物理体积中,在量规场梯度流中定义了两个$β$函数的重新规定方案。最近发表的十种理论的结果导致了在有限体积步骤$β$ function中的红外固定点(IRFP)的指标中,理论ARXIV的强耦合体制:2004.00754。我们分析了强大的重量化量规耦合的基本扩展的十种晶格集合,在受控晶格范围内未找到IRFP的证据或提示。我们还讨论了最近引入的晶格定义定义和算法实现的新的十种测试,该测试的$β$函数在仪表场的梯度流量上定义了无限欧几里得时空在连续体中的梯度流。最初,我们引入了这种新的算法,以匹配有限体积步骤$β$ functions theless bass nable-Conformal-form-form-formal仪表理论,无限量$β$ - 函数在chiral质量质量上达到了小费的质量质量变形。 对无限 - 体积$β$功能的晶格分析的结果与我们基于步骤$β$ function分析中缺乏IRFP一致。我们通过基于梯度流动的三环扰动理论在无限量的弱耦合方面进行重要接触,这是第一个试点研究,以长期目标开发替代方法来确定QCD中Z-Boson Pole的强耦合$α_s$。

New tests are applied to two $β$-functions of the much-discussed BSM model with ten massless fermion flavors in the fundamental representation of the SU(3) color gauge group. The renormalization scheme of the two $β$-functions is defined on the gauge field gradient flow in respective finite or infinite physical volumes at zero lattice spacing. Recently published results in the ten-flavor theory led to indicators of an infrared fixed point (IRFP) in the finite-volume step $β$-function in the strong coupling regime of the theory arXiv:2004.00754. We analyze our substantially extended set of ten-flavor lattice ensembles at strong renormalized gauge couplings and find no evidence or hint for IRFP in the finite-volume step $β$-function within controlled lattice reach. We also discuss new ten-flavor tests of the recently introduced lattice definition and algorithmic implementation of the $β$-function defined on the gradient flow of the gauge field over infinite Euclidean space-time in the continuum. Originally we introduced this new algorithm to match finite-volume step $β$-functions in massless near-conformal gauge theories with the infinite-volume $β$-function reached in the chiral limit from small fermion mass deformations of spontaneous chiral symmetry breaking. Results from the lattice analysis of the ten-flavor infinite-volume $β$-function are consistent with the absence of IRFP from our step $β$-function based analysis. We make important contact at weak coupling in infinite volume with gradient flow based three-loop perturbation theory, serving as a first pilot study toward the long-term goal of developing alternate approach to the determination of the strong coupling $α_s$ at the Z-boson pole in QCD.

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