Photon rest mass from localized fast radio bursts with improved distribution of dispersion measure from extragalactic gas

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Hauptverfasser: Zhang, Yuchen, Liu, Yang, Yu, Hongwei, Wu, Puxun
Format: Preprint
Veröffentlicht: 2025
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author Zhang, Yuchen
Liu, Yang
Yu, Hongwei
Wu, Puxun
author_facet Zhang, Yuchen
Liu, Yang
Yu, Hongwei
Wu, Puxun
contents The assumption that photons are massless is a foundational postulate of modern physics, yet it remains subject to experimental verification. Fast radio bursts (FRBs), with their cosmological distances and precisely measured dispersion, offer an excellent laboratory for testing this hypothesis. In this work, we propose an improved distribution function for the dispersion measure arising from extragalactic gas and demonstrate that it provides an excellent fit to mock data. We then apply this distribution to constrain the photon rest mass under the $Λ$CDM, $w$CDM, and $w_{0}w_{a}$CDM cosmological models, the last of which is favored by recent DESI baryon acoustic oscillation observations. The corresponding 1$σ$ upper limits on the photon mass are found to be $4.83\times10^{-51}\,\mathrm{kg}$, $4.71\times10^{-51}\,\mathrm{kg}$, and $4.86\times10^{-51}\,\mathrm{kg}$, respectively, which are the most stringent constraints derived from FRBs to date. These results indicate that the choice of cosmological model has only a minor impact on photon-mass bounds, demonstrate that FRBs provide robust and reliable constraints, and offer strong empirical support for the massless nature of the photon.
format Preprint
id arxiv_https___arxiv_org_abs_2511_14163
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Photon rest mass from localized fast radio bursts with improved distribution of dispersion measure from extragalactic gas
Zhang, Yuchen
Liu, Yang
Yu, Hongwei
Wu, Puxun
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
The assumption that photons are massless is a foundational postulate of modern physics, yet it remains subject to experimental verification. Fast radio bursts (FRBs), with their cosmological distances and precisely measured dispersion, offer an excellent laboratory for testing this hypothesis. In this work, we propose an improved distribution function for the dispersion measure arising from extragalactic gas and demonstrate that it provides an excellent fit to mock data. We then apply this distribution to constrain the photon rest mass under the $Λ$CDM, $w$CDM, and $w_{0}w_{a}$CDM cosmological models, the last of which is favored by recent DESI baryon acoustic oscillation observations. The corresponding 1$σ$ upper limits on the photon mass are found to be $4.83\times10^{-51}\,\mathrm{kg}$, $4.71\times10^{-51}\,\mathrm{kg}$, and $4.86\times10^{-51}\,\mathrm{kg}$, respectively, which are the most stringent constraints derived from FRBs to date. These results indicate that the choice of cosmological model has only a minor impact on photon-mass bounds, demonstrate that FRBs provide robust and reliable constraints, and offer strong empirical support for the massless nature of the photon.
title Photon rest mass from localized fast radio bursts with improved distribution of dispersion measure from extragalactic gas
topic Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2511.14163