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A novel approach to nonperturbative renormalization of singlet and nonsinglet lattice operators

机译:单重态和非单一晶格算子的非扰动正则化的新方法

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A novel method for nonperturbative renormalization of lattice operators is introduced, which lends itself to the calculation of renormalization factors for nonsinglet as well as singlet operators. The method is based on the Feynman–Hellmann relation, and involves computing two-point correlators in the presence of generalized background fields arising from introducing additional operators into the action. As a first application, and test of the method, we compute the renormalization factors of the axial vector current A μ and the scalar density S for both nonsinglet and singlet operators for N f = 3 flavors of SLiNC fermions. For nonsinglet operators, where a meaningful comparison is possible, perfect agreement with recent calculations using standard three-point function techniques is found.
机译:提出了一种新的格算子非扰动重整化方法,适用于非单重算子和单重算子重整化因子的计算。该方法基于Feynman-Hellmann关系,并且涉及在由于将额外的运算符引入操作而产生的广义背景场的情况下计算两点相关器。作为该方法的第一个应用和方法的测试,我们针对Nf = 3种SLiNC费米子,计算了非单重和单重算子的轴向矢量电流Aμ和标量密度S的重新归一化因子。对于可能进行有意义比较的非单一算子,发现与使用标准三点函数技术的最新计算完全吻合。

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