Surprises with angular momentum
arXiv:hep-th/0211008 · doi:10.1007/s00023-003-0915-0
Abstract
The physics of angular momentum in even space dimensions can be surprisingly counter-intuitive. Three such suprises, all associated with the properties of supersymmetric rotating objects, are examined: (i) 5D black holes, (ii) Dyonic instantons and (iii) Supertubes.
11 pp. Contribution to proceedings of TH-2002; revised to include typographical corrections and further references
Cited by in corpus (19)
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- The multipolar structure of fuzzballs
- Rotating Einstein-Maxwell-Dilaton Black Holes in D Dimensions
- New D(2,1;alpha) Mechanics with Spin Variables
- Negative Horizon Mass for Rotating Black Holes
- Charged Rotating AdS Black Holes with Chern-Simons coupling
- Supersymmetric traversable wormholes
- Tachyon Tube on non BPS D-branes
- Sequences of extremal radially excited rotating black holes
- Non-uniqueness, Counterrotation, and Negative Horizon Mass of Einstein-Maxwell-Chern-Simons Black Holes
- Tubular Solutions in NS5-brane, Dp-brane and Macroscopic Strings Backgrounds
- Supersymmetric Rotating Black Hole in a Compactified Spacetime
- Baryon as dyonic instanton
- Tubular Solutions of Dirac-Born-Infeld Action on Dp-Brane Background
- Entropy and Quantum States of Tachyon Supertube
- Quantum SUSY Algebra of -lumps in the Massive Grassmannian Sigma Model