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Consistent Constraints on the Equivalence Principle from localised Fast Radio Bursts

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arxiv 2302.10072 v2 pith:OBH4PTCK submitted 2023-02-20 astro-ph.CO astro-ph.GAgr-qc

classification astro-ph.COastro-ph.GAgr-qc
keywords differentfreeconstraintsdelayelectronsenergyrangetime
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abstract

Fast Radio Bursts (FRBs) are short astrophysical transients of extragalactic origin. Their burst signal is dispersed by the free electrons in the large-scale-structure (LSS), leading to delayed arrival times at different frequencies. Another potential source of time delay is the well known Shapiro delay, which measures the space-space and time-time metric perturbations along the line-of-sight. If photons of different frequencies follow different trajectories, i.e. if the universality of free fall guaranteed by the weak equivalence principle (WEP) is violated, they would experience an additional relative delay. This quantity, however, is not an observable on the background level as it is not gauge independent, which has led to confusion in previous papers. Instead, an imprint can be seen in the correlation between the time delays of different pulses. In this paper, we derive robust and consistent constraints from twelve localised FRBs on the violation of the WEP in the energy range between 4.6 and 6 meV. In contrast to a number of previous studies, we consider our signal to be not in the model, but in the covariance matrix of the likelihood. To do so, we calculate the covariance of the time delays induced by the free electrons in the LSS, the WEP breaking terms, the Milky Way and host galaxy. By marginalising over both host galaxy contribution and the contribution from the free electrons, we find that the parametrised post-Newtonian parameter $\gamma$ characterising the WEP violation must be constant in this energy range to 1 in $10^{13}$ at 68$\;\%$ confidence. These are the tightest constraints to-date on $\Delta\gamma$ in this low energy range.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Cosmological-model independent limits on photon mass from FRB and SNe data

    astro-ph.CO 2025-04 conditional novelty 5.0 of 10

    From 68 fast radio bursts and 1048 supernovae, the authors find a photon rest mass of roughly 18 to 29 times 10^-51 kilograms depending on the assumed intergalactic gas fraction, with zero mass still allowed at 2 to 3 sigma.

  2. Estimating the baryon fraction in the IGM from well-localized FRBs and DESI data

    astro-ph.CO 2025-07 conditional novelty 4.0 of 10

    Using 107 localized FRBs with DESI BAO and supernova distances, the author estimates fIGM near 0.99 in the constant model but finds Bayesian evidence inconclusive between constant and evolving baryon fraction.

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