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Higher-dimensional resolution of dilatonic black hole singularities

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arxiv hep-th/9410073 v2 pith:OOW5HWUR submitted 1994-10-10 hep-th gr-qc

classification hep-thgr-qc
keywords blackbranesupergravitydilatondilatonicdimensionsholenon-dilatonic
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We show that the four-dimensional extreme dilaton black hole with dilaton coupling constant $a= \sqrt{p/(p+2)}$ can be interpreted as a {\it completely non-singular}, non-dilatonic, black $p$-brane in $(4+p)$ dimensions provided that $p$ is {\it odd}. Similar results are obtained for multi-black holes and dilatonic extended objects in higher spacetime dimensions. The non-singular black $p$-brane solutions include the self-dual three brane of ten-dimensional N=2B supergravity and a multi-fivebrane solution of eleven-dimensional supergravity. In the case of a supersymmetric non-dilatonic $p$-brane solution of a supergravity theory, we show that it saturates a bound on the energy per unit $p$-volume.

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  1. Instanton Moduli, Topology and the Bosonic/Heterotic String Origins

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    New BPS NS(-1)-branes in N=1, D=4 supergravity are supported by SU(2)xSU(2) instantons; the string-frame topology changes with instanton moduli while the 3-form charge stays fixed.

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