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arXiv:2308.03031·v3·High Energy Astrophysical Phenomena

Lorentz Invariance Violation Limits from GRB 221009A

Tsvi Piran🇮🇱 · Dmitry D. Ofengeim🇮🇱

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Abstract

It has been long conjectured that a signature of Quantum Gravity will be Lorentz Invariance Violation (LIV) that could be observed at energies much lower than the Planck scale. One possible signature of LIV is an energy-dependent speed of photons. This can be tested with a distant transient source of very high-energy photons. We explore time-of-flight limits on LIV derived from LHAASO's observations of tens of thousands of TeV photons from GRB 221009A, the brightest gamma-ray burst of all time. For a linear () dependence of the photon velocity on energy, we find a lower limit on the subluminal (superluminal) LIV scale of . These are comparable to the stringent limits obtained so far and, as an independent bound obtained from a different redshift, confirm their robustness. For a quadratic model (, corresponding to SME operators), the limits, which are currently the best available with the time-of-flight method, are . Our analysis uses the publicly available LHAASO data, which is only in the TeV range. Higher energy data would enable us to improve these limits by a factor of 3 for and by an order of magnitude for .

Comments: Accepted for publication in Physical Review D

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