Measuring Lorentz Violation in Weak Gravity Fields

Zonghao Li
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Abstract

Many new linearized coefficients for Lorentz violation are discovered in our recent work on the construction of a generic Lorentz-violating effective field theory in curved spacetime. The new coefficients can be constrained by experiments in weak gravity fields. In this work, we compare experiments in different gravitational potentials and study three types of gravity-related experiments: free-fall, gravitational interferometer, and gravitational bound-state experiments. First constraints on the new coefficients for Lorentz violation are extracted from those experiments.
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弱重力场中洛伦兹破坏的测量
在我们最近的工作中,我们发现了许多新的洛伦兹违反的线性化系数在弯曲时空中建立了一个通用的洛伦兹违反有效场论。新系数可以在弱重力场条件下的实验中得到约束。在本文中,我们比较了不同重力势下的实验,并研究了三种与重力相关的实验:自由落体实验、重力干涉仪实验和重力束缚态实验。首先从这些实验中提取出洛伦兹破缺新系数的约束条件。
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