Bounding the photon mass with gravitationally lensed fast radio bursts
arXiv:2412.09806
Abstract
The gravitational time delays of macro-lenses can be used to constrain the rest mass of the photon with high accuracy. Assuming a point-mass external shear lens model, we prove that an upper limit of the photon mass can be derived directly from two observables--the time delay and the leading-to-trailing flux ratio of strongly lensed fast radio bursts (FRBs). Using the observed values of and of a lensed FRB candidate, i.e., FRB 20190308C, as a reference, we obtain a strict upper limit of the photon mass between , for a given external shear strength of , and , within the external shear range of . This provides the most stringent limit to date on the photon mass through gravitational lensing time delays, improving by 1 to 2 orders of magnitude the previous results obtained from lensed active galactic nuclei.
6 pages, 3 figures, accepted for publication in PRD Letters