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Tales from the prehistory of Quantum Gravity

机译:来自迄今为止的量子重力的故事

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The main purpose of this paper is to analyse the earliest work of Leon Rosenfeld, one of the pioneers in the search of Quantum Gravity, the supposed theory unifying quantum theory and general relativity. We describe how and why Rosenfeld tried to face this problem in 1927, analysing the role of his mentors: Oskar Klein, Louis de Broglie and Theophile De Donder. Rosenfeld asked himself how quantum mechanics should concretely modify general relativity. In the context of a five-dimensional theory, Rosenfeld tried to construct a unifying framework for the gravitational and electromagnetic interaction and wave mechanics. Using a sort of "general relativistic quantum mechanics" Rosenfeld introduced a wave equation on a curved background. He investigated the metric created by what he called 'quantum phenomena', represented by wave functions. Rosenfeld integrated Einstein equations in the weak field limit, with wave functions as source of the gravitational field. The author performed a sort of semi-classical approximation obtaining at the first order the Reissner-Nordstrom metric. We analyse how Rosenfeld's work is part of the history of Quantum Mechanics, because in his investigation Rosenfeld was guided by Bohr's correspondence principle. Finally we briefly discuss how his contribution is connected with the task of finding out which metric can be generated by a quantum field, a problem that quantum field theory on curved backgrounds will start to address 35 years later.
机译:本文的主要目的是分析Leon Rosenfeld的最早工作,寻找量子重力的一个先驱,假设的理论统一量子理论和一般相对性。我们描述了Rosenfeld在1927年试图面对这个问题的方式,分析他的导师的角色:Oskar Klein,Louis de Broglie和Theophile de Londer。 Rosenfeld向自己询问了量子力学应该如何具体修改一般相对性。在五维理论的背景下,Rosenfeld试图为引力和电磁相互作用和波力学构建统一框架。使用一种“一般相对论量子力学”Rosenfeld在弯曲的背景上引入了波动方程。他调查了他所谓的“量子现象”创建的度量,由波函数表示。 Rosenfeld在弱场限制中集成了Einstein方程,波起到引力场的源。作者在Reissner-Nordstrom度量标准中执行了一种半古典近似获得了最初的次数。我们分析Rosenfeld的工作是量子力学历史的一部分,因为在他的调查中,Rosenfeld由Bohr的对应原则为指导。最后,我们简要讨论他的贡献如何与发现哪个度量可以由量子字段生成的任务,这是曲线背景上的量子场理论将开始地址35年后的问题。

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