arXiv · hep-th/9310114
Faster than light' photons and charged black holes
Abstract
Photons propagating in curved spacetime may, depending on their direction and polarisation, have velocities exceeding the ``speed of light'' c. This phenomenon arises through vacuum polarisation in QED and is a tidal gravitational effect depending on the local curvature. It implies that the Principle of Equivalence does not hold for interacting quantum field theories in curved spacetime and reflects a quantum violation of local Lorentz invariance. These results are illustrated for the propagation of photons in the Reissner-Nordström spacetime characterising a charged black hole. A general analysis of electromagnetic as well as gravitational birefringence is presented.
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R. D. Daniels, G. M. Shore. 1993-10-25. Faster than light' photons and charged black holes. https://doi.org/10.1016/0550-3213(94)90291-7
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