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- W3105408093 abstract "We investigate the classical stability of supersymmetric, asymptotically flat, microstate geometries with five non-compact dimensions. Such geometries admit an “evanescent ergosurface”: a timelike hypersurface of infinite redshift. On such a surface, there are null geodesics with zero energy relative to infinity. These geodesics are stably trapped in the potential well near the ergosurface. We present a heuristic argument indicating that this feature is likely to lead to a nonlinear instability of these solutions. We argue that the precursor of such an instability can be seen in the behaviour of linear perturbations: nonlinear stability would require that all linear perturbations decay sufficiently rapidly but the stable trapping implies that some linear perturbation decay very slowly. We study this in detail for the most symmetric microstate geometries. By constructing quasinormal modes of these geometries we show that generic linear perturbations decay slower than any inverse power of time." @default.
- W3105408093 created "2020-11-23" @default.
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- W3105408093 date "2016-10-01" @default.
- W3105408093 modified "2023-10-16" @default.
- W3105408093 title "Instability of supersymmetric microstate geometries" @default.
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- W3105408093 doi "https://doi.org/10.1007/jhep10(2016)031" @default.
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