paper

Effective photon mass from black-hole formation

arXiv:1603.01148 · doi:10.1016/j.nuclphysb.2017.03.016

Abstract

We compute the value of effective photon mass at one-loop level in QED in the background of small () spherically symmetric black hole in asymptotically flat spacetime. This effect is associated with the modification of electron/positron propagator in presence of event horizon. Physical manifestations of black-hole environment are compared with those of hot neutral plasma. We estimate the distance to the nearest black hole from the upper bound on obtained in the Coulomb-law test. We also find that corrections to electron mass and fine structure constant at one-loop level in QED are negligible in the weak gravity regime.

version to be published in Nuclear Physics B