Gravitational collapse and evolution of holographic black holes

Gravitational collapse is analyzed in the Brane-World by arguing that regularity of five-dimensional geodesics require that stars on the brane have an atmosphere. For the simple case of a spherically symmetric cloud of non-dissipating dust, conditions are found for which the collapsing star evaporat...

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Veröffentlicht in:Journal of physics. Conference series 2006-03, Vol.33 (1), p.434-439
Hauptverfasser: Casadio, R, Germani, C
Format: Artikel
Sprache:eng
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Zusammenfassung:Gravitational collapse is analyzed in the Brane-World by arguing that regularity of five-dimensional geodesics require that stars on the brane have an atmosphere. For the simple case of a spherically symmetric cloud of non-dissipating dust, conditions are found for which the collapsing star evaporates and approaches the Hawking behavior as the (apparent) horizon is being formed. The effective energy of the star vanishes at a finite radius and the star afterwards re-expands and anti-evaporates . Israel junction conditions across the brane (holographically related to the matter trace anomaly) and the projection of the Weyl tensor on the brane (holographically interpreted as the quantum back-reaction on the brane metric) contribute to the total energy as, respectively, an anti-evaporation and an evaporation term.
ISSN:1742-6596
1742-6588
1742-6596
DOI:10.1088/1742-6596/33/1/055