Study of 2+1 flavor finite-temperature QCD using improved Wilson quarks at the physical point with the gradient flow

K. Kanaya, Atsushi Baba, A. Suzuki, S. Ejiri, M. Kitazawa, Hiroshi Suzuki, Y. Taniguchi, T. Umeda
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引用次数: 5

Abstract

We study thermodynamic properties of 2+1 flavor QCD applying the Small Flow-time eXpansion (SFtX) method based on the gradient flow. The method provides us with a general way to compute correctly renormalized observables irrespective of explicit violation of symmetries due to the regularization, such as the Poincare and chiral symmetries on the lattice. We report on the status of our on-going project to compute the energy-momentum tensor and the chiral condensate at the physical point with improved Wilson quarks, extending our previous study with slightly heavy u and d quarks. We also report on our test of two-loop matching coefficients recently calculated by Harlander et al., revisiting the case of QCD with slightly heavy u and d quarks. Our results suggest that the SFtX method is powerful in extracting physical observables on the lattice.
利用改进Wilson夸克在物理点梯度流动下研究2+1味有限温度QCD
应用基于梯度流的小流时展开(SFtX)方法研究了2+1风味QCD的热力学性质。该方法为我们提供了一种通用的方法来计算正确的重整化观测值,而不考虑由于正则化而导致的对称性的显式破坏,例如点阵上的庞加莱对称性和手性对称性。我们报告了我们正在进行的用改进的威尔逊夸克计算物理点上的能量动量张量和手性凝聚的项目的现状,扩展了我们以前用稍微重的u和d夸克的研究。我们还报告了我们对Harlander等人最近计算的双环匹配系数的测试,重新审视了带有稍重的u和d夸克的QCD的情况。我们的结果表明,SFtX方法在提取晶格上的物理观测值方面是强大的。
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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