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The development of renormalization group methods for particle physics: Formal analogies between classical statistical mechanics and quantum field theory

机译:粒子物理学重整化群方法的发展:经典统计力学与量子场理论的正式类比

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Analogies between classical statistical mechanics and quantum field theory (QFT) played a pivotal role in the development of renormalization group (RG) methods for application in the two theories. This paper focuses on the analogies that informed the application of RG methods in QFT by Kenneth Wilson and collaborators in the early 1970's (Wilson and Kogut in Phys Rep 12:75-200,1974). The central task that is accomplished is the identification and analysis of the analogical mappings employed. The conclusion is that the analogies in this case study are formal analogies, and not physical analogies. That is, the analogical mappings relate elements of the models that play formally analogous roles and that have substantially different physical interpretations. Unlike other cases of the use of analogies in physics, the analogical mappings do not preserve causal structure. The conclusion that the analogies in this case are purely formal carries important implications for the interpretation of QFT, and poses challenges for philosophical accounts of analogical reasoning and arguments in defence of scientific realism. Analysis of the interpretation of the cutoffs is presented as an illustrative example of how physical disanalogies block the exportation of physical interpretations from from statistical mechanics to QFT. A final implication is that the application of RG methods in QFT supports non-causal explanations, but in a different manner than in statistical mechanics.
机译:古典统计力学与量子场理论(QFT)之间的类比在两个理论中的重新定化组(RG)方法的发展中起着枢转作用。本文重点介绍在1970年代初的肯尼斯威尔逊和合作者(威尔逊和Kogut在Phys Rep 12:75-200,1974)中通过Kenneth Wilson和合作者在QFT中获悉RG方法的类比。完成的中央任务是对所采用的类比映射的识别和分析。结论是,在这种情况下的类比是正式的类比,而不是物理类比。也就是说,类比映射涉及扮演正式类似角色的模型的元素,并且具有基本上不同的物理解释。与物理学中使用类比的其他情况不同,类似映射不会保持因果结构。结论是,在这种情况下的类比纯粹是正式对QFT解释的重要意义,对模拟推理和辩护辩护的哲学账户构成挑战。截止截止解的解释分析作为物理侵权转移如何阻止从统计机制到QFT的物理解释出口的说明性示例。最终的含义是QFT中的RG方法的应用支持非因果解释,但以不同的方式而不是统计力学。

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