电弱环积分物理过程的有限体积形式主义

Xin-Yu Tuo, Xu Feng
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摘要

本研究调查了涉及长程强子矩阵元素与电弱环积分结合的物理过程中的有限体积效应。我们采用的方法是将电弱部分作为无限体积版本来实现,在本文中称为 EW$_\infty$ 方法。在强子中间态由单个粒子或两个粒子主导的情况下,我们建立了校正有限体积效应的一般方法。对于单粒子情况,这项工作从一个新的角度推导出了有限体积重构(IVR)方法。对于双粒子情况,我们提供了幂-有限体积效应和具有指数发散时间依赖性的非物理项的修正公式。本研究中建立的有限体积公式具有广泛的应用,包括各种过程中的QED修正和$K_L\to\mu^+\mu^-$或$\eta\to\mu^+\mu^-$衰变中的双光子交换贡献。
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Finite-volume formalism for physical processes with an electroweak loop integral
This study investigates finite-volume effects in physical processes that involve the combination of long-range hadronic matrix elements with electroweak loop integrals. We adopt the approach of implementing the electroweak part as the infinite-volume version, which is denoted as the EW$_\infty$ method in this work. A general approach is established for correcting finite-volume effects in cases where the hadronic intermediate states are dominated by either a single particle or two particles. For the single-particle case, this work derives the infinite volume reconstruction (IVR) method from a new perspective. For the two-particle case, we provide the correction formulas for power-law finite-volume effects and unphysical terms with exponentially divergent time dependence. The finite-volume formalism developed in this study has broad applications, including the QED corrections in various processes and the two-photon exchange contribution in $K_L\to\mu^+\mu^-$ or $\eta\to\mu^+\mu^-$ decays.
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