Motivating Gauge-Invariant Approaches to Particle Physics

Philipp Berghofer
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Abstract

There is noticeable consensus among physicists and philosophers that only gauge-invariant quantities can be physically real. However, this insight that physical quantities must be gauge-invariant is not well-reflected in standard approaches to particle physics. For instance, each and every elementary field/particle of the Standard Model fails to be gauge-invariant! The main objective of this paper is to offer an accessible, concise, and convincing analysis of why philosophers and physicists should devote more of their energy to working on gauge-invariant approaches. Correspondingly, the thesis of this paper is that pursuing gauge-invariant approaches has several virtues. For instance, gauge-invariant reformulations allow us to make particle physics consistent with the mathematical framework in which it is formulated. This is illustrated by how mathematical theorems such as Elitzur's theorem, the Gribov ambiguity, and Haag's theorem pose problems for standard approaches but are avoided by gauge-invariant approaches.
激励粒子物理的量子不变方法
物理学家和哲学家们有一个明显的共识,即只有量规不变的量才是真实的物理量。然而,物理量必须是规整不变的这一观点并没有很好地反映在粒子物理学的标准方法中。例如,标准模型的每一个基本场/粒子都不是量规不变的!本文的主要目的是提供一个通俗易懂、简明扼要而又令人信服的分析,说明哲学家和物理学家为什么应该把更多的精力用于研究量规不变性方法。相应地,本文的论点是,追求量规不变方法有几个优点。例如,量规不变的重构使我们能够使粒子物理学与它所处的数学框架相一致。埃利祖尔定理、格里波夫不等式和哈格定理等数学定理如何给标准方法带来问题,却被量规不变方法所避免,就说明了这一点。
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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