The gradient flow formulation of the electroweak Hamiltonian

Fabian Lange
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Abstract

Flavor observables are usually computed with the help of the electroweak Hamiltonian which separates the short-distance from the long-distance regime. The Wilson coefficients are calculated perturbatively, while matrix elements of the operators require non-perturbative treatment for many processes, e.g. through lattice simulations. The resulting necessity to compute the transformation between the different renormalization schemes in the two calculations constitutes an important source of uncertainties. An elegant solution to this problem is provided by the gradient-flow formalism, already widely used in lattice simulations, because its composite operators do not require renormalization. In this contribution we report on the construction of the electroweak Hamiltonian in the gradient-flow formalism through NNLO in QCD.
电弱哈密顿量的梯度流动公式
风味观测值通常是借助电弱哈密顿量来计算的,它将短距离和远距离区分开。威尔逊系数的计算是微扰的,而算子的矩阵元素在许多过程中需要非微扰处理,例如通过晶格模拟。因此,必须计算两种计算中不同重整化方案之间的转换,这是不确定性的重要来源。这个问题的一个优雅的解决方案是由梯度流的形式,已经广泛应用于晶格模拟,因为它的复合算子不需要重整化。在这篇贡献中,我们报告了在量子cd中通过NNLO构造梯度流形式中的电弱哈密顿量。
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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