1998Classical and Quantum GravityOpen access

On the equilibrium of charged masses in general relativity: the electrostatic case

Nora Bretón, V. S. Manko, Jesús Sánchez

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Abstract

The problem of the equilibrium of charged aligned masses is discussed within the framework of the electrostatic multi-soliton solution of the Einstein-Maxwell equations. The equilibrium states in a charged two-body system are considered in detail. We demonstrate the validity of Smarr's mass formula for a charged static black hole when the latter is in electrostatic equilibrium with a superextreme object.

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The problem of the equilibrium of charged aligned masses is discussed within the framework of the electrostatic multi-soliton solution of the Einstein-Maxwell equations. The equilibrium states in a charged two-body system are considered in detail. We demonstrate the validity of Smarr's mass formula for a charged static black hole when the latter is in electrostatic equilibrium with a superextreme object.

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Available abstract

The problem of the equilibrium of charged aligned masses is discussed within the framework of the electrostatic multi-soliton solution of the Einstein-Maxwell equations. The equilibrium states in a charged two-body system are considered in detail. We demonstrate the validity of Smarr's mass formula for a charged static black hole when the latter is in electrostatic equilibrium with a superextreme object.

Key concepts: Physics, Charged black hole, General relativity, Classical mechanics, Black hole (networking), Charged particle, Electrostatics, Theory of relativity

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