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Nonlinear electromagnetic fields in strictly stationary spacetimes

Ana Bokulić, Ivica Smolić, Tajron Jurić

2022Physical review. D/Physical review. D.18 citationsDOIOpen Access PDF

Abstract

We prove two theorems which imply that any stationary nonlinear electromagnetic field obeying a dominant energy condition in a strictly stationary, everywhere regular, asymptotically flat spacetime must be either trivial or a stealth field. The first theorem holds in static spacetimes and is independent of the gravitational part of the action, as long as the coupling of the electromagnetic field to the gravitational field is minimal. The second theorem assumes Einstein--Hilbert gravitational action and relies on the positive energy theorem, but does not assume that the spacetime metric is static. In addition, we discuss possible generalizations of these results, to theories with charged matter, as well as higher-dimensional nonlinear electromagnetic fields.

Topics & Concepts

PhysicsSpacetimeElectromagnetic fieldGravitational fieldClassical mechanicsNonlinear systemAction (physics)GravitationHilbert spaceMathematical physicsEinsteinField (mathematics)Energy conditionGeneral relativityQuantum mechanicsMathematicsPure mathematicsCosmology and Gravitation TheoriesBlack Holes and Theoretical PhysicsPulsars and Gravitational Waves Research
Nonlinear electromagnetic fields in strictly stationary spacetimes | Litcius