English

Logarithmic Corrections to Black Hole Entropy: the Non-BPS Branch

High Energy Physics - Theory 2018-07-11 v2

Abstract

We compute the leading logarithmic correction to black hole entropy on the non-BPS branch of 4D N2{\cal N}\geq 2 supergravity theories. This branch corresponds to finite temperature black holes whose extremal limit does not preserve supersymmetry, such as the D0D6D0-D6 system in string theory. Starting from a black hole in minimal Kaluza-Klein theory, we discuss in detail its embedding into N=8,6,4,2{\cal N}=8, 6, 4, 2 supergravity, its spectrum of quadratic fluctuations in all these environments, and the resulting quantum corrections. We find that the cc-anomaly vanishes only when N6{\cal N}\geq 6, in contrast to the BPS branch where cc vanishes for all N2{\cal N}\geq 2. We briefly discuss potential repercussions this feature could have in a microscopic description of these black holes.

Keywords

Cite

@article{arxiv.1801.01926,
  title  = {Logarithmic Corrections to Black Hole Entropy: the Non-BPS Branch},
  author = {Alejandra Castro and Victor Godet and Finn Larsen and Yangwenxiao Zeng},
  journal= {arXiv preprint arXiv:1801.01926},
  year   = {2018}
}

Comments

41 pages, 8 tables. v2: minor typos corrected, the version published on JHEP