帕德马纳班电动力学和杨-米尔斯理论的边界变分原理

Benjamin Koch
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摘要

在这篇论文中,我们重温了帕德马纳班(Padmanabhan)为使用由边界项组成的场作用来描述引力而提出的变分原理。我们证明,这一过程也可用于推导麦克斯韦方程和杨-米尔斯方程。此外,我们还发现,在这种边界方法中,违反双重耦合和自发对称破缺的规规玻色子质量以一种类似于宇宙学常数在原始引力背景下出现的方式出现了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Padmanabhan's Boundary Variational Principle for Electrodynamics and Yang-Mills Theory
In this note, we revisit a variational principle introduced by Padmanabhan for describing gravitation using a field action composed of a boundary term. We demonstrate that this procedure can also be applied to derive Maxwell's and Yang-Mills equations. Additionally, we find that in this boundary approach, \(\mathcal{CP}\)-violating dual couplings and spontaneous symmetry breaking through gauge boson masses emerge in a manner analogous to the appearance of the cosmological constant in the original gravitational context.
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