On the universality of inner black hole mechanics and higher curvature gravity

被引:0
作者
Alejandra Castro
Nima Dehmami
Gaston Giribet
David Kastor
机构
[1] Harvard University,Center for the Fundamental Laws of Nature, Physics Department
[2] Boston University,Physics Department
[3] Physics Department,Department of Physics
[4] University of Buenos Aires and IFIBA-CONICET,undefined
[5] Ciudad Universitaria,undefined
[6] University of Massachusetts,undefined
来源
Journal of High Energy Physics | / 2013卷
关键词
Black Holes in String Theory; Black Holes;
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摘要
Black holes are famous for their universal behavior. New thermodynamic relations have been found recently for the product of gravitational entropies over all the horizons of a given stationary black hole. This product has been found to be independent of the mass for all such solutions of Einstein-Maxwell theory in d = 4, 5. We study the universality of this mass independence by introducing a number of possible higher curvature corrections to the gravitational action. We consider finite temperature black holes with both asymptotically flat and (A)dS boundary conditions. Although we find examples for which mass independence of the horizon entropy product continues to hold, we show that the universality of this property fails in general. We also derive further thermodynamic properties of inner horizons, such as the first law and Smarr relation, in the higher curvature theories under consideration, as well as a set of relations between thermodynamic potentials on the inner and outer horizons that follow from the horizon entropy product, whether or not it is mass independent.
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