Constraining Lorentz Invariance Violation Using Short Gamma-Ray Bursts

Walid Jamil Azzam, Ali Mohamed Hasan
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Abstract

Lorentz Invariance is a foundational principle in modern physics, but some recent quantum gravity theories have hinted that it may be violated at extremely high energies. Gamma-ray bursts (GRBs) provide a promising tool for checking and constraining any deviations from Lorentz Invariance due to their huge energies and cosmological distances. Gamma-ray bursts, which are the most intense and powerful explosions in the universe, are traditionally divided into long bursts whose observed duration exceeds 2 s, and short bursts whose observed duration is less than 2 s. In this study, we employ a recent sample of 46 short GRBs to check for any deviation from Lorentz Invariance. We analyze the spectral lag of the bursts in our data sample and check for any redshift dependence in the GRB rest frame, which would indicate a violation of Lorentz Invariance. Our results are consistent, to within 1σ, with no deviation from Lorentz Invariance.
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利用短伽马射线暴约束洛伦兹不变性
洛伦兹不变性是现代物理学的一个基本原理,但最近的一些量子引力理论暗示,它可能在极高的能量下被打破。伽玛射线暴(GRBs)由于其巨大的能量和宇宙距离,为检查和限制任何偏离洛伦兹不变性提供了一个很有前途的工具。伽玛射线暴是宇宙中最强烈和最强大的爆炸,传统上分为持续时间超过2秒的长爆发和持续时间小于2秒的短爆发。在这项研究中,我们采用了最近的46个短grb样本来检查是否偏离洛伦兹不变性。我们分析了数据样本中爆发的光谱滞后,并检查了GRB休息帧中的任何红移依赖,这可能表明违反了洛伦兹不变性。我们的结果是一致的,在1σ以内,没有偏离洛伦兹不变性。
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