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相变和早期宇宙粒子物理的诞生。

Phase transitions and the birth of early universe particle physics.

机构信息

Rotman Institute of Philosophy, University of Western Ontario, London, ON, Canada.

出版信息

Stud Hist Philos Sci. 2024 Jun;105:59-73. doi: 10.1016/j.shpsa.2024.03.006. Epub 2024 May 15.

Abstract

This paper provides a conceptual history of the development of early universe particle physics in the 1970s, focusing on the development of more sophisticated tools for constructing gauge-theories at finite-temperature. I start with a focus on early investigations into spontaneous symmetry restoration, and continue through the development of functional methods up to equilibrium finite-temperature field theory. I argue that the early universe provides an ideal setting for integrated modelling of thermal, gravitational, and particle physics effects due to its relative simplicity. I further argue that the development of finite-temperature field theory played an important secondary role in the rise of the effective field theory worldview, and investigate the status of the analogies between phase transitions in particle physics and condensed matter physics. I find that the division into "formal" versus "physical" analogies is too coarse-grained to understand the important physical developments at play.

摘要

本文提供了 20 世纪 70 年代早期宇宙粒子物理学发展的概念历史,重点介绍了在有限温度下构建规范理论的更复杂工具的发展。我从对自发对称恢复的早期研究开始,一直发展到功能方法,直到平衡有限温度场论。我认为,由于早期宇宙相对简单,因此为热、引力和粒子物理效应的综合建模提供了理想的环境。我进一步认为,有限温度场论的发展在有效场论世界观的兴起中起着重要的次要作用,并研究了粒子物理和凝聚态物理中相变之间的类比的地位。我发现,将类比分为“形式”和“物理”过于粗糙,无法理解发挥重要作用的物理发展。

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