Phys. Rev. D 71, 104029 (2005) [7 pages]Black hole thermodynamics from near-horizon conformal quantum mechanics
Horacio E. Camblong1 and Carlos R. Ordóñez2,3 Received 27 December 2004; revised 31 March 2005; published 23 May 2005 The thermodynamics of black holes is shown to be directly induced by their near-horizon conformal invariance. This behavior is exhibited using a scalar field as a probe of the black hole gravitational background, for a general class of metrics in D spacetime dimensions (with D≥4). The ensuing analysis is based on conformal quantum mechanics, within a hierarchical near-horizon expansion. In particular, the leading conformal behavior provides the correct quantum statistical properties for the Bekenstein-Hawking entropy, with the near-horizon physics governing the thermodynamics from the outset. Most importantly: (i) this treatment reveals the emergence of holographic properties; (ii) the conformal coupling parameter is shown to be related to the Hawking temperature; and (iii) Schwarzschild-like coordinates, despite their “coordinate singularity,” can be used self-consistently to describe the thermodynamics of black holes. ©2005 The American Physical Society
URL: http://link.aps.org/doi/10.1103/PhysRevD.71.104029 [ Abstract | Previous article | Next article | Issue 10 ] |
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