The hot attractor mechanism: decoupling without deep throats

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dc.contributor.author Goldstein, K.
dc.contributor.author Jejjala, V.
dc.contributor.author Nampuri, S.
dc.date.accessioned 2017-03-29T09:24:40Z
dc.date.available 2017-03-29T09:24:40Z
dc.date.issued 2016-04
dc.identifier.citation Goldstein, K., Jejjala, V. and Nampuri, S. 2016. The hot attractor mechanism: decoupling without deep throats. Journal of High Energy Physics (4): Article number 26. en_ZA
dc.identifier.issn 1126-6708 (Print)
dc.identifier.issn 1029-8479 (Online)
dc.identifier.uri http://hdl.handle.net/10539/22254
dc.description.abstract Non-extremal black holes in (Formula presented.) supergravity have two horizons, the geometric mean of whose areas recovers the horizon area of the extremal black hole obtained from taking a smooth zero temperature limit. In prior work [1] using the attractor mechanism, we deduced the existence of several moduli independent invariant quantities obtained from averaging over a decoupled inter-horizon region. We establish that non-extremal geometries at the Reissner-Nordström point, where the scalar moduli are held fixed, can be lifted to solutions in supergravity with a near-horizon AdS3×S2. These solutions have the same entropy and temperature as the original black hole and therefore allow an interpretation of the underlying gravitational degrees of freedom in terms of CFT2. Symmetries of the moduli space enable us to explicate the origin of entropy in the extremal limit. en_ZA
dc.language.iso en en_ZA
dc.publisher Springer Verlag en_ZA
dc.rights © 2016 Goldstein et al.; licensee Springer. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0). en_ZA
dc.subject AdS-CFT Correspondence en_ZA
dc.subject Black Holes en_ZA
dc.subject Black Holes in String Theory en_ZA
dc.title The hot attractor mechanism: decoupling without deep throats en_ZA
dc.type Article en_ZA
dc.journal.volume 2016 en_ZA
dc.journal.title Journal of High Energy Physics en_ZA
dc.description.librarian NCS17 en_ZA
dc.citation.doi 10.1007/JHEP04(2016)026 en_ZA
dc.citation.issue 4 en_ZA


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