arXiv · hep-th/9311120
New Black Hole, String and Membrane Solutions of the Four-Dimensional Heterotic String
Abstract
We present solutions of the low-energy four-dimensional heterotic string corresponding to $p$-branes with $p=0,1,2$, which are characterized by a mass per unit $p$-volume, ${\cal M}_{p+1}$, and topological ``magnetic'' charge, $g_{p+1}$. In the extremal limit, $\sqrt{2} κ{\cal M}_{p+1} = g_{p+1}$, they reduce to the recently discovered non-singular supersymmetric monopole, string and domain wall solutions. A novel feature is that the solutions involve both the dilaton and the modulus fields. In particular, the effective scalar coupling to the Maxwell field, $e^{-αϕ} F_{μν} F^{μν}$, gives rise to a new string black hole with $α= \sqrt{3}$, in contrast to the pure dilaton black hole solution which has $α=1$. This means that electric/magnetic duality in $D=4$ may be seen as a consequence of string/fivebrane duality in $D=10$.
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M. J. Duff, Ramzi R. Khuri, Ruben Minasian, Joachim Rahmfeld. 1993-11-19. New Black Hole, String and Membrane Solutions of the Four-Dimensional Heterotic String. https://doi.org/10.1016/0550-3213(94)90244-5
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