Intersecting Non-extreme p-Branes and Linear Dilaton Background
Abstract
We construct the general static solution to the supergravity action containing gravity, the dilaton and a set of antisymmetric forms describing the intersecting branes delocalized in the relative transverse dimensions. The solution is obtained by reducing the system to a set of separate Liouville equations (the intersection rules implying the separability); it contains the maximal number of free parameters corresponding to the rank of the differential equations. Imposing the requirement of the absence of naked singularities, we show that the general configurations are restricted to two and only two classes: the usual asymptotically flat intersecting branes, and the intersecting branes some of which are asymptotically flat and some approach the linear dilaton background at infinity. In both cases the configurations are black. These are supposed to be relevant for the description of the thermal phase of the QFT's in the corresponding Domain-Wall/QFT duality.
Keywords
Cite
@article{arxiv.hep-th/0506216,
title = {Intersecting Non-extreme p-Branes and Linear Dilaton Background},
author = {Chiang-Mei Chen and Dmitri V. Gal'tsov and Nobuyoshi Ohta},
journal= {arXiv preprint arXiv:hep-th/0506216},
year = {2009}
}
Comments
14 pages, v2: references added, v3: minor corrections and refs. added