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Light Speed Variation in a String Theory Model for Space-Time Foam

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abstract

We revisit a supersymmetric string model for space-time foam, in which bosonic open-string states, such as photons, can possess quantum-gravity-induced velocity fluctuations in vacuum. We argue that the suggestion of light speed variation with lower bound from gamma-ray burst photon time delays can serve as a support for this string-inspired framework, through connecting the experimental finding with model predictions. We also derive the value of the effective quantum-gravity mass in this framework, and give a qualitative study on the model-dependent coefficients. Constraints from birefringent effects and/or photon decays, including the novel $\gamma$-decay constraint obtained here from the latest Tibet AS$\gamma$ near-PeV photon, are also found to be consistent with predictions in such a quantum-gravity scheme. Future observation that can testify further the theory is suggested.

fields

hep-ph 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Monte Carlo simulation of GRB data to test Lorentz-invariance violation

hep-ph · 2025-04-22 · conditional · novelty 5.0

A combined model with both Lorentz-violation and energy-dependent intrinsic delays recovers simulated parameters across all mock datasets and fits multi-GeV and TeV GRB photons, yielding a subluminal LV scale of about 3 x 10^17 GeV.

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  • Monte Carlo simulation of GRB data to test Lorentz-invariance violation hep-ph · 2025-04-22 · conditional · none · ref 7 · internal anchor

    A combined model with both Lorentz-violation and energy-dependent intrinsic delays recovers simulated parameters across all mock datasets and fits multi-GeV and TeV GRB photons, yielding a subluminal LV scale of about 3 x 10^17 GeV.