Supersymmetric Dyons, Superstrings, and Rotating Wormholes
We construct supersymmetric dyon solutions based on the ‘t Hooft/Polyakov monopole. We show that these solutions satisfy κ-symmetry constraints and can therefore be generalized to supersymmetric solutions of type I SO32 string theory. After applying a T-duality transformation to these solutions, we...
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Language: | English |
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Wiley
2022-01-01
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Series: | Advances in High Energy Physics |
Online Access: | http://dx.doi.org/10.1155/2022/7710817 |
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author | E. Olszewski |
author_facet | E. Olszewski |
author_sort | E. Olszewski |
collection | DOAJ |
description | We construct supersymmetric dyon solutions based on the ‘t Hooft/Polyakov monopole. We show that these solutions satisfy κ-symmetry constraints and can therefore be generalized to supersymmetric solutions of type I SO32 string theory. After applying a T-duality transformation to these solutions, we obtain two D3-branes connected by a wormhole, embedded in an M5-brane. We analyze the geometries of each D3-brane for two cases: one corresponding to a dyon with vanishing spin and the other corresponding to a magnetic monopole with nonvanishing spin. In the case of the vanishing spin, the scalar curvature is finite everywhere. In the case of the nonvanishing 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/ρ2, ρ 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. |
format | Article |
id | doaj-art-de3c7c1fead747519ad71ac677c40c4a |
institution | Kabale University |
issn | 1687-7365 |
language | English |
publishDate | 2022-01-01 |
publisher | Wiley |
record_format | Article |
series | Advances in High Energy Physics |
spelling | doaj-art-de3c7c1fead747519ad71ac677c40c4a2025-02-03T06:13:03ZengWileyAdvances in High Energy Physics1687-73652022-01-01202210.1155/2022/7710817Supersymmetric Dyons, Superstrings, and Rotating WormholesE. Olszewski0Department of Physics and Physical OceanographyWe construct supersymmetric dyon solutions based on the ‘t Hooft/Polyakov monopole. We show that these solutions satisfy κ-symmetry constraints and can therefore be generalized to supersymmetric solutions of type I SO32 string theory. After applying a T-duality transformation to these solutions, we obtain two D3-branes connected by a wormhole, embedded in an M5-brane. We analyze the geometries of each D3-brane for two cases: one corresponding to a dyon with vanishing spin and the other corresponding to a magnetic monopole with nonvanishing spin. In the case of the vanishing spin, the scalar curvature is finite everywhere. In the case of the nonvanishing 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/ρ2, ρ 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.http://dx.doi.org/10.1155/2022/7710817 |
spellingShingle | E. Olszewski Supersymmetric Dyons, Superstrings, and Rotating Wormholes Advances in High Energy Physics |
title | Supersymmetric Dyons, Superstrings, and Rotating Wormholes |
title_full | Supersymmetric Dyons, Superstrings, and Rotating Wormholes |
title_fullStr | Supersymmetric Dyons, Superstrings, and Rotating Wormholes |
title_full_unstemmed | Supersymmetric Dyons, Superstrings, and Rotating Wormholes |
title_short | Supersymmetric Dyons, Superstrings, and Rotating Wormholes |
title_sort | supersymmetric dyons superstrings and rotating wormholes |
url | http://dx.doi.org/10.1155/2022/7710817 |
work_keys_str_mv | AT eolszewski supersymmetricdyonssuperstringsandrotatingwormholes |