Litcius/Paper detail

Shielding a charged black hole

Justin C. Feng, Sumanta Chakraborty, Vítor Cardoso

2023Physical review. D/Physical review. D.22 citationsDOIOpen Access PDF

Abstract

We describe a shielding mechanism for a charged black hole immersed in a background involving charged matter fields, solely arising from the Einstein-Maxwell field equations. In particular, we consider a charged generalization of the Einstein cluster, that is a charged black hole surrounded by an effective fluid model for a partially charged dust cloud. We show that the shielding mechanism, arising thereof, is generic and appears in a different parametrization of the problem as well. In this process, we provide the most general electrovacuum solution in a spacetime region devoid of charges, but in the presence of a static and spherically symmetric charge distribution elsewhere. Side by side, we also introduce a convenient parametrization, providing the global solution of the Einstein-Maxwell's field equations in the presence of a charged black hole within the environment of charged fluid. We also comment on the nature of the photon sphere, shadow radius and the eikonal quasinormal modes in the Einstein-Maxwell cluster.

Topics & Concepts

PhysicsCharged black holeCharged particleBlack hole (networking)Parametrization (atmospheric modeling)Charge (physics)Classical mechanicsElectromagnetic shieldingQuantum electrodynamicsQuantum mechanicsSchwarzschild radiusGravitationRadiative transferComputer networkComputer scienceRouting protocolRouting (electronic design automation)Link-state routing protocolIonAstrophysical Phenomena and ObservationsPulsars and Gravitational Waves ResearchCosmology and Gravitation Theories