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Causality of photon propagation under dominant energy condition in nonlinear electrodynamics

Shinya Tomizawa, Ryotaku Suzuki

2023Physical review. D/Physical review. D.13 citationsDOI

Abstract

Recently, various types of the regular black hole model are reintroduced as the solution of the Einstein equations coupled with nonlinear electrodynamics (NED). In NED, it is known that photons do not propagate along the null geodesics of the spacetime geometry, but of so-called effective geometry, which suggests the possibility of so-called ``faster/slower than light'' photons. We study the relation between the causality of photons and the dominant energy condition (DEC) in some static and spherically symmetric black hole spacetimes in NED. We show that if photon trajectories with a nonzero angular momentum are timelike in the spacetime geometry, DEC is always satisfied in static and spherically symmetric spacetimes in any NED that admits the Maxwell limit, and vice versa, at least, in the weak field limit. Thus, this implies that in such NED, the violation of DEC admits the existence of faster than light photons.

Topics & Concepts

PhysicsPhotonSpacetimeCausality (physics)GeodesicGeodesics in general relativityEnergy conditionLimit (mathematics)Einstein field equationsAngular momentumClassical mechanicsQuantum electrodynamicsPhoton sphereField (mathematics)Quantum mechanicsMathematical physicsEinsteinGeneral relativitySchwarzschild radiusGeometryCharged black holePure mathematicsMathematicsMathematical analysisBlack Holes and Theoretical PhysicsAstrophysical Phenomena and ObservationsQuantum Electrodynamics and Casimir Effect
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