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The gravitational Hamiltonian, action, entropy and surface terms

Classical and Quantum Gravity · 1996 · Vol. 13(6) · pp. 1487–1498
S. W. HawkingGary T. Horowitz

Abstract

We give a general derivation of the gravitational hamiltonian starting from the Einstein-Hilbert action, keeping track of all surface terms. The surface term that arises in the hamiltonian can be taken as the definition of the `total energy', even for spacetimes that are not asymptotically flat. (In the asymptotically flat case, it agrees with the usual ADM energy.) We also discuss the relation between the euclidean action and the hamiltonian when there are horizons of infinite area (e.g. acceleration horizons) as well as the usual finite area black hole horizons. Acceleration horizons seem to be more analogous to extreme than nonextreme black holes, since we find evidence that their horizon area is not related to the total entropy.

Black Holes and Theoretical PhysicsCosmology and Gravitation TheoriesNoncommutative and Quantum Gravity TheoriesPhysicsHamiltonian (control theory)Mathematical physicsEuclidean geometryClassical mechanicsGravitationEntropy (arrow of time)Theoretical physicsQuantum mechanicsGeometry
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References
Cosmic strings and domain walls
Physics Reports · 1985 · 2,016 citations
Quasilocal energy and conserved charges derived from the gravitational action
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1993 · 1,700 citations
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