arXiv Analytics

Sign in

arXiv:hep-th/9411187AbstractReferencesReviewsResources

Black Hole Solutions in Heterotic String Theory on a Torus

Ashoke Sen

Published 1994-11-25, updated 1994-12-03Version 3

We construct the general electrically charged, rotating black hole solution in the heterotic string theory compactified on a six dimensional torus and study its classical properties. This black hole is characterized by its mass, angular momentum, and a 28 dimensional electric charge vector. We recover the axion-dilaton black holes and Kaluza-Klein black holes for special values of the charge vector. For a generic black hole of this kind, the 28 dimensional magnetic dipole moment vector is not proportional to the electric charge vector, and we need two different gyromagnetic ratios for specifying the relation between these two vectors. We also give an algorithm for constructing a 58 parameter rotating dyonic black hole solution in this theory, characterized by its mass, angular momentum, a 28 dimensional electric charge vector and a 28 dimensional magnetic charge vector. This is the most general asymptotically flat black hole solution in this theory consistent with the no-hair theorem.

Comments: LaTeX, 20 pages, A paragraph added discussing the relatioship between area of the stretched horizon and density of string states in the extremal limit
Journal: Nucl.Phys.B440:421-440,1995
Categories: hep-th, gr-qc
Related articles: Most relevant | Search more
arXiv:hep-th/9512157 (Published 1995-12-20, updated 1996-11-21)
Dyonic Black Hole in Heterotic String Theory
arXiv:hep-th/9504161 (Published 1995-04-29)
S-DUALITY AND THE ENTROPY OF BLACK HOLES IN HETEROTIC STRING THEORY
arXiv:1207.5782 [hep-th] (Published 2012-07-24)
Exactly stable non-BPS spinors in heterotic string theory on tori