English

Supersymmetric Dyons, Superstrings, and Rotating Wormholes

High Energy Physics - Theory 2022-12-02 v3

Abstract

We construct supersymmetric dyon solutions based on the 't Hooft/Polyakov monopole. We show that these solutions satisfy κ\kappa symmetry constraints and can, therefore be generalized to supersymmetric solutions of type I SO(32) string theory. After applying a T-duality transformation to these solutions, we obtain two D3D3-branes connected by a wormhole, embedded in an M5 brane. We analyze the geometries of each D3D3-brane for two cases, one corresponding to a dyon with vanishing spin, and the other corresponding to a magnetic monopole with non-vanishing spin. In the case of vanishing spin, the scalar curvature is finite, everywhere, In the case of non-vanishing spin, we find a frame dragging effect due to the spin. We also find that the scalar curvature diverges along the spin quantization axis, as 1/ρ21/\rho^2, ρ\rho being the cylindrical, radial coordinate defined with respect to the spin axis. These solutions demonstrate the subtle relationship between the Yang-Mills and gravitational interactions, i.e., gauge/gravity duality.

Keywords

Cite

@article{arxiv.2209.01680,
  title  = {Supersymmetric Dyons, Superstrings, and Rotating Wormholes},
  author = {Edward A. Olszewski},
  journal= {arXiv preprint arXiv:2209.01680},
  year   = {2022}
}

Comments

31 pages, 6 jpeg figures

R2 v1 2026-06-28T00:42:34.956Z