Searching for Lorentz-Violating Signatures in Astrophysical Photon Observations

Jun-Jie Wei
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Abstract

As a basic symmetry of Einstein's theory of special relativity, Lorentz invariance has withstood very strict tests. But there are still motivations for such tests. Firstly, many theories of quantum gravity suggest violations of Lorentz invariance at the Planck energy scale. Secondly, even minute deviations from Lorentz symmetry can accumulate as particle travel across large distances, leading to detectable effects at attainable energies. Thanks to their long baselines and high-energy emission, astrophysical observations provide sensitive tests of Lorentz invariance in the photon sector. In this paper, I briefly introduce astrophysical methods that we adopted to search for Lorentz-violating signatures, including vacuum dispersion and vacuum birefringence.
在天体物理光子观测中寻找违反洛伦兹的特征
作为爱因斯坦狭义相对论的基本对称性,洛伦兹不变性经受住了非常严格的检验。但仍有进行此类测试的动机。首先,许多量子引力理论表明在普朗克能量尺度上违反洛伦兹不变性。其次,即使是微小的偏离洛伦兹对称也会随着粒子的长距离运动而积累,从而导致可探测到的能量效应。由于它们的长基线和高能发射,天体物理观测提供了对光子扇区洛伦兹不变性的敏感测试。本文简要介绍了我们用来寻找违反洛伦兹特征的天体物理方法,包括真空色散和真空双折射。
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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