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High-loop perturbative renormalization constants for lattice QCD (I): finite constants for Wilson quark currents

机译:晶格QCD(I)的高环摄动重归一化常数:威尔逊夸克电流的有限常数

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We present a high order perturbative computation of the renormalization constants ZV, ZA and of the ratio ZP/ZS for Wilson fermions. The computational setup is the one provided by the RI’-MOM scheme. Three- and four-loop expansions are made possible by numerical stochastic perturbation theory. Results are given for various numbers of flavors and/or (within a finite accuracy) for generic nf up to three loops. For the case nf=2 we also present four-loop results. Finite-size effects are well under control, and the continuum limit is taken by means of hypercubic symmetric Taylor expansions. The main indetermination comes from truncation errors, which should be assessed in connection with the convergence properties of the series. The latter is best discussed in the framework of boosted perturbation theory, whose impact we try to assess carefully. Final results and their uncertainties show that high-loop perturbative computations of lattice QCD renormalization constants (RCs) are feasible and should not be viewed as a second choice. As a by-product, we discuss the perturbative expansion for the critical mass, for which results are also for generic nf up to three loops, while a four-loop result is obtained for nf=2.
机译:我们提出了威尔逊费米子重整化常数ZV,ZA和ZP / ZS之比的高阶摄动计算。 RI’-MOM方案提供了一种计算设置。数值随机摄动理论使三环和四环展开成为可能。给出了各种风味的结果和/或(在一定的精度范围内)通用nf(最多三个循环)的结果。对于nf = 2的情况,我们还给出了四环结果。有限大小的影响已得到很好的控制,并且通过超三次对称泰勒展开来采用连续极限。主要不确定性来自于截断误差,应结合系列的收敛性进行评估。最好在增强摄动理论的框架内讨论后者,我们会仔细评估其影响。最终结果及其不确定性表明,晶格QCD重归一化常数(RCs​​)的高环微扰计算是可行的,不应视为第二选择。作为副产品,我们讨论临界质量的扰动展开,对于该结果,对于最多三个回路的一般nf的结果也是如此,而对于nf = 2则获得四回路的结果。

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