Holography of gravity encoded in a relation between entropy, horizon area and action for gravity

dc.contributor.authorPadmanabhan, T.
dc.date.accessioned2012-03-12T11:13:46Z
dc.date.available2012-03-12T11:13:46Z
dc.date.issued2002-05-20
dc.description.abstractI provide a general proof of the conjecture that one can attribute an en- tropy to the area of any horizon. This is done by constructing a canonical ensemble of a subclass of spacetimes with a fixed value for the temperature T = β−1 and evaluating the exact partition function Z(β). For spherically symmetric spacetimes with a horizon at r = a, the partition function has the generic form Z ∝ exp[S −βE], where S = (1/4)4πa2 and |E| = (a/2). Both S and E are determined entirely by the properties of the metric near the horizon. This analysis reproduces the conventional result for the black-hole spacetimes and provides a simple and consistent interpretation of entropy and energy for De Sitter spacetime. For the Rindler spacetime the entropy per unit transverse area turns out to be (1/4) while the energy is zero. Further, I show that the relationship between entropy and area allows one to construct the action for the gravitational field on the bulk and thus the full theory. In this sense, gravity is intrinsically holographic.en_US
dc.identifier.urihttp://hdl.handle.net/11007/1251
dc.language.isoenen_US
dc.relation.ispartofseriesIUCAA Preprints;22/02
dc.subjectGravityen_US
dc.subjectEntropyen_US
dc.subjectHorizonen_US
dc.subjectAction for gravityen_US
dc.titleHolography of gravity encoded in a relation between entropy, horizon area and action for gravityen_US
dc.typeArticleen_US

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