Publication | Open Access
Conserved charges of black holes in Weyl and Einstein–Gauss–Bonnet gravities
18
Citations
51
References
2014
Year
Black Hole DynamicEngineeringGeneral RelativityBlack HoleCosmologyQuantum Field TheoryConserved ChargesQuantum Field Theory In Curved SpacetimeKilling VectorOff-shell Noether CurrentsGravitation TheoryOff-shell Generalization
An off-shell generalization of the Abbott–Deser–Tekin (ADT) conserved charge was recently proposed by Kim et al. They achieved this by introducing off-shell Noether currents and potentials. In this paper, we construct the crucial off-shell Noether current by the variation of the Bianchi identity for the expression of EOM, with the help of the property of Killing vector. Our Noether current, which contains an additional term that is just one half of the Lie derivative of a surface term with respect to the Killing vector, takes a different form in comparison with the one in their work. Then we employ the generalized formulation to calculate the quasi-local conserved charges for the most general charged spherically symmetric and the dyonic rotating black holes with AdS asymptotics in four-dimensional conformal Weyl gravity, as well as the charged spherically symmetric black holes in arbitrary dimensional Einstein–Gauss–Bonnet gravity coupled to Maxwell or nonlinear electrodynamics in AdS spacetime. Our results confirm those obtained through other methods in the literature.
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