Lorentz Invariance Violation from Gamma-Ray Bursts

Hanlin Song and Bo-Qiang Ma
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Abstract

Lorentz invariance violation (LV) is examined through the time delay between high-energy and low-energy photons in gamma-ray bursts (GRBs). Previous studies determined the LV energy scale as ELV ≃ 3.60 × 1017 GeV using Fermi Gamma-ray Space Telescope (FGST) data. This study updates the time-delay model and reaffirms these findings with new observations. High-energy photons from GRBs at GeV and TeV bands are analyzed, including the 99.3 GeV photon from GRB 221009A (FGST), the 1.07 TeV photon from GRB 190114C (MAGIC), and the 12.2 TeV photon from GRB 221009A (LHAASO). Our analysis, in conjunction with previous data, consistently shows that high-energy photons are emitted earlier than low-energy photons at the source. By evaluating 17 high-energy photons from 10 GRBs observed by FGST, MAGIC, and LHAASO, we estimate the LV energy scale to be ELV ≃ 3.00 × 1017 GeV. The null hypothesis of dispersion-free vacuum E = pc (or, equivalently, the constant light speed vγ = c) is rejected at a significance level of 3.1σ or higher.
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伽玛射线暴的洛伦兹不变性破坏
通过伽玛射线暴(GRBs)中高能光子和低能光子之间的时间延迟,研究了洛伦兹不变性破坏(LV)。已有研究利用Fermi伽玛射线空间望远镜(FGST)数据确定低能级能级为ELV≃3.60 × 1017 GeV。本研究更新了时滞模型,并以新的观测结果重申了这些发现。对GRB 221009A (FGST)的99.3 GeV光子、GRB 190114C (MAGIC)的1.07 TeV光子和GRB 221009A (LHAASO)的12.2 TeV光子进行了分析。我们的分析,结合之前的数据,一致表明高能光子比低能光子在源处发射得更早。通过对FGST、MAGIC和LHAASO观测到的10个grb的17个高能光子进行评价,我们估计低能级能级为ELV≃3.00 × 1017 GeV。在3.1σ或更高的显著性水平上,无色散真空E = pc(或等价地,恒定光速vγ = c)的零假设被拒绝。
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