Color-electric correlation functions under gradient flow

L. Altenkort, O. Kaczmarek, Lukas Mazur, Hai-Tao Shu
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引用次数: 1

Abstract

We report on the progress of our study on the color-electric correlation functions under gradient flow on the lattice. This calculation is the first step of our long-term project to estimate a series of important transport coefficients, of which the heavy quark momentum diffusion coefficient is our first attempt, as it can be extracted from a color-electric correlation function that has been calculated non-perturbatively using noise reduction technique in the quenched approximation [1]. By comparing the flowed correlation function with those obtained by other signal-improving techniques, for instance the multi-level algorithm used in [1], one can gain insight into the applicability of the gradient flow and the renormalization of the correlation functions. We start with quenched, isotropic lattices. Currently we have finished measuring the color-electric correlation functions on 4 different lattices with $\beta$-values corresponding to a temperature of $T\approx 1.5T_c$. We perform a continuum extrapolation on the flowed correlators at fixed physical flow times followed by an extrapolation of the continuum estimate back to zero flow time. The next step is to extend the study to different temperatures and to extend the study to dynamical QCD.
梯度流下的色电相关函数
本文报道了晶格上梯度流动下色电相关函数的研究进展。该计算是我们估算一系列重要输运系数的长期项目的第一步,其中重夸克动量扩散系数是我们的第一次尝试,因为它可以从一个色电相关函数中提取,该函数已经在淬火近似中使用降噪技术进行了非摄动计算[1]。通过将流相关函数与其他信号改进技术(如[1]中使用的多级算法)得到的流相关函数进行比较,可以深入了解梯度流的适用性以及相关函数的重归一化。我们从淬灭的各向同性晶格开始。目前我们已经完成了4个不同晶格上的色电相关函数的测量,对应温度为$T\approx 1.5T_c$的$\beta$值。我们在固定的物理流动时间对流动相关器进行连续统外推,然后将连续统估计外推回零流动时间。下一步是将研究扩展到不同温度,并将研究扩展到动态QCD。
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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