We show that a microscopic entropy formula based on Virasoro algebra follows from properties of stationary Killing horizons for Lagrangians with arbitrary dependence on Riemann tensor. The properties used are a consequence of regularity of invariants of Riemann tensor on the horizon. Eventual generalization of these results to Lagrangians with derivatives of Riemann tensor, as suggested by an example treated in the paper, relies on assuming regularity of invariants involving derivatives of Riemann tensor. This assumption however leads also to new interesting restrictions on metric functions near the horizon
AbstractWe treat D-dimensional black holes with Killing horizon for extended Gauss–Bonnet gravity. W...
We explicitly prove the horizon-entropy increase law for both causal and quasi-locally defined horiz...
AbstractWe treat spherically symmetric black holes in Gauss–Bonnet gravity by imposing boundary cond...
We show that a microscopic entropy formula based on Virasoro algebra follows from properties of stat...
Using Virasoro algebra approach, black hole entropy formula for a general class of higher curvature ...
Using Virasoro algebra approach, black hole entropy formula for a general class of higher curvature ...
We show that microscopic entropy formula based on Virasoro algebra follows from properties of statio...
We show that the microscopic black hole entropy formula based on Virasoro algebra can be derived fro...
We treat spherically symmetric black holes in Gauss–Bonnet gravity by imposing boundary conditions o...
We treat spherically symmetric black holes in Gauss–Bonnet gravity by imposing boundary conditions o...
We treat spherically symmetric black holes in Gauss-Bonnet gravity by imposing boundary conditions o...
We treat D-dimensional black holes with Killing horizon for extended Gauss–Bonnet gravity. We use th...
We treat D-dimensional black holes with Killing horizon for extended Gauss–Bonnet gravity. We use th...
We treat D-dimensional black holes with Killing horizon for extended Gauss-Bonnet gravity. We use Ca...
We show that the gravitational phase space for the near-horizon region of a bifurcate, axisymmetric ...
AbstractWe treat D-dimensional black holes with Killing horizon for extended Gauss–Bonnet gravity. W...
We explicitly prove the horizon-entropy increase law for both causal and quasi-locally defined horiz...
AbstractWe treat spherically symmetric black holes in Gauss–Bonnet gravity by imposing boundary cond...
We show that a microscopic entropy formula based on Virasoro algebra follows from properties of stat...
Using Virasoro algebra approach, black hole entropy formula for a general class of higher curvature ...
Using Virasoro algebra approach, black hole entropy formula for a general class of higher curvature ...
We show that microscopic entropy formula based on Virasoro algebra follows from properties of statio...
We show that the microscopic black hole entropy formula based on Virasoro algebra can be derived fro...
We treat spherically symmetric black holes in Gauss–Bonnet gravity by imposing boundary conditions o...
We treat spherically symmetric black holes in Gauss–Bonnet gravity by imposing boundary conditions o...
We treat spherically symmetric black holes in Gauss-Bonnet gravity by imposing boundary conditions o...
We treat D-dimensional black holes with Killing horizon for extended Gauss–Bonnet gravity. We use th...
We treat D-dimensional black holes with Killing horizon for extended Gauss–Bonnet gravity. We use th...
We treat D-dimensional black holes with Killing horizon for extended Gauss-Bonnet gravity. We use Ca...
We show that the gravitational phase space for the near-horizon region of a bifurcate, axisymmetric ...
AbstractWe treat D-dimensional black holes with Killing horizon for extended Gauss–Bonnet gravity. W...
We explicitly prove the horizon-entropy increase law for both causal and quasi-locally defined horiz...
AbstractWe treat spherically symmetric black holes in Gauss–Bonnet gravity by imposing boundary cond...