Questioning the equivalence principle

Thibault Damour
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引用次数: 68

Abstract

The Equivalence Principle (EP) is not one of the ‘universal’ principles of physics (like the action principle). It is a heuristic hypothesis which was introduced by Einstein in 1907, and used by him to construct his theory of general relativity. In modern language, the (Einsteinian) EP consists in assuming that the only long-range field with gravitational-strength couplings to matter is a massless spin-2 field. Modern unification theories, and notably string theory, suggest the existence of new fields (in particular, scalar fields: ‘dilaton’ and ‘moduli’) with gravitational-strength couplings. In most cases the couplings of these new fields ‘violate’ the EP. If the field is long-ranged, these EP violations lead to many observable consequences (variation of ‘constants’, non-universality of free fall, relative drift of atomic clocks, etc.). The best experimental probe of a possible violation of the EP is to compare the free-fall acceleration of different materials.

对等效原则的质疑
等效原理(EP)不是物理学的“普遍”原理之一(像作用原理一样)。这是爱因斯坦在1907年提出的一个启发式假设,并被他用来构建他的广义相对论。用现代的语言来说,(爱因斯坦的)EP包括假设唯一与物质有引力强度耦合的远程场是一个无质量的自旋2场。现代统一理论,尤其是弦理论,认为存在引力强度耦合的新场(特别是标量场:“膨胀”和“模”)。在大多数情况下,这些新场的耦合“违反”了EP。如果场是长范围的,这些EP违反会导致许多可观察到的后果(“常数”的变化,自由落体的非普世性,原子钟的相对漂移等)。最好的实验方法是比较不同材料的自由落体加速度。
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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