广义相对论和远距离平行引力在理论上是否相等?

James Owen Weatherall, Helen Meskhidze
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引用次数: 0

摘要

远平行引力与广义相对论有许多共同的定性特征,但在以下方面与广义相对论不同:在广义相对论中,引力是时空曲率的一种表现形式,而在远平行引力中,时空(始终)是平坦的。该理论中的引力效应产生于时空扭曲。人们经常声称,远距平行引力是广义相对论的等效重述。在本文中,我们对这一观点提出了质疑。我们认为,根据分类等价标准和任何更强的标准,这两个理论都不是等价的,而且远距平行引力提出了严格意义上比广义相对论更多的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Are General Relativity and Teleparallel Gravity Theoretically Equivalent?
Teleparallel gravity shares many qualitative features with general relativity, but differs from it in the following way: whereas in general relativity, gravitation is a manifestation of space-time curvature, in teleparallel gravity, spacetime is (always) flat. Gravitational effects in this theory arise due to spacetime torsion. It is often claimed that teleparallel gravity is an equivalent reformulation of general relativity. In this paper we question that view. We argue that the theories are not equivalent, by the criterion of categorical equivalence and any stronger criterion, and that teleparallel gravity posits strictly more structure than general relativity.
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