Computing black hole partition functions from quasinormal modes

被引:0
作者
Peter Arnold
Phillip Szepietowski
Diana Vaman
机构
[1] University of Virginia,Department of Physics
[2] Utrecht University,Institute for Theoretical Physics and Center for Extreme Matter and Emergent Phenomena
[3] College of William and Mary,Department of Physics
来源
Journal of High Energy Physics | / 2016卷
关键词
AdS-CFT Correspondence; Black Holes; Holography and condensed matter physics (AdS/CMT); Holography and quark-gluon plasmas;
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摘要
We propose a method of computing one-loop determinants in black hole space-times (with emphasis on asymptotically anti-de Sitter black holes) that may be used for numerics when completely-analytic results are unattainable. The method utilizes the expression for one-loop determinants in terms of quasinormal frequencies determined by Denef, Hartnoll and Sachdev in [1]. A numerical evaluation must face the fact that the sum over the quasinormal modes, indexed by momentum and overtone numbers, is divergent. A necessary ingredient is then a regularization scheme to handle the divergent contributions of individual fixed-momentum sectors to the partition function. To this end, we formulate an effective two-dimensional problem in which a natural refinement of standard heat kernel techniques can be used to account for contributions to the partition function at fixed momentum. We test our method in a concrete case by reproducing the scalar one-loop determinant in the BTZ black hole background. We then discuss the application of such techniques to more complicated spacetimes.
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