arXiv · hep-th/9402089
Extreme Domain Wall--Black Hole Complementarity in N=1SUPERGRAVITY with a General Dilaton Coupling
Abstract
We study supersymmetric (extreme) domain walls in four-dimensional (4d) N=1 supergravity theories with a general dilaton coupling $α> 0$. Type I walls, which are static, planar (say, in ($x,y$) plane) configurations, interpolate between Minkowski space-time and a vacuum with a varying dilaton field. We classify their global space-time with respect to the value of the coupling $α$. $N=1$ supergravity with $α=1$, an effective theory from superstrings, provides a dividing line between the theories with $α>1$, where there is a naked (planar) singularity on one side of the wall, and the theories with $α<1$, where the singularity of the of the wall is covered by the horizon. The global space-time (in $(t,z$) direction) of the extreme walls with the coupling $α$ is the same as the global space-time (in ($t,r)$ direction) of the extreme magnetically charged black holes with the coupling $1/α$.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mirjam Cvetic. 1994-10-20. Extreme Domain Wall--Black Hole Complementarity in N=1SUPERGRAVITY with a General Dilaton Coupling. https://doi.org/10.1016/0370-2693(94)90305-0
Cite the original work for its findings. Save a collection to share your selection of sources.