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World-Sheet Duality, Space-Time Foam, and the Quantum Fate of a Stringy Black Hole

John Ellis, N. E. Mavromatos, D. V. Nanopoulos

hep-tharXiv:hep-th/9206077

Abstract

We interpret Minkowski black holes as world-sheet spikes which are related by world-sheet duality to vortices that correspond to Euclidean black holes. These world-sheet defects induce defects in the gauge fields of the corresponding coset Wess-Zumino descriptions of spherically-symmetric black holes. The low-temperature target space-time foam is a Minkowski black hole (spike) plasma with confined Euclidean black holes (vortices). The high-temperature phase is a dense vortex plasma described by a topological gauge field theory on the world-sheet, which possesses enhanced symmetry as in the target space-time singularity at the core of a black hole. Quantum decay via higher-genus effects induces a back-reaction which causes a Minkowski black hole to lose mass until it is indistinguishable from intrinsic fluctuations in the space-time foam.

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