A quantum model of Schwarzschild black hole evaporation
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A quantum model of Schwarzschild black hole evaporation

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A quantum model of Schwarzschild black hole evaporation

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Cruz Muñoz, José Luis; Mikovic, A.; Navarro Salas, José Perfil
This document is a artículoDate1997

Este documento está disponible también en : http://dx.doi.org/10.1016/S0370-2693(97)00060-9

Este documento está disponible también en : http://hdl.handle.net/10550/33636
We construct a one-loop effective metric describing the evaporation phase of a Schwarzschild black hole in a spherically symmetric null-dust model. This is achieved by quantising the Vaidya solution and by chosing a time dependent quantum state. This state describes a black hole which is initially in thermal equilibrium and then the equilibrium is switched off, so that the black hole starts to evaporate, shrinking to a zero radius in a finite proper time. The naked singularity appears, and the Hawking flux diverges at the end-point. However, a static metric can be imposed in the future of the end-point. Although this end-state metric cannot be determined within our construction, we show that it cannot be a flat metric.

    Cruz Muñoz, José Luis Mikovic, A. Navarro Salas, José 1997 A quantum model of Schwarzschild black hole evaporation Physics Letters B 395 3-4 184 190
http://dx.doi.org/10.1016/S0370-2693(97)00060-9

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