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Phases and Stability of Non-Uniform Black Strings
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abstract
We construct solutions of non-uniform black strings in dimensions from $D \approx 9$ all the way up to $D = \infty$, and investigate their thermodynamics and dynamical stability. Our approach employs the large-$D$ perturbative expansion beyond the leading order, including corrections up to $1/D^4$. Combining both analytical techniques and relatively simple numerical solution of ODEs, we map out the ranges of parameters in which non-uniform black strings exist in each dimension and compute their thermodynamics and quasinormal modes with accuracy. We establish with very good precision the existence of Sorkin's critical dimension and we prove that not only the thermodynamic stability, but also the dynamic stability of the solutions changes at it.
Forward citations
Cited by 2 Pith papers
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String Theory in a Pinch: Resolving the Gregory-Laflamme Singularity
Near-Hagedorn string solutions show that in five and six spacetime dimensions, the Gregory-Laflamme pinch halts at a stable stringy neck that slowly evaporates, avoiding a naked singularity.
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Phases of String Stars in the Presence of a Spatial Circle
String star phase diagrams on a spatial circle are computed: new d=2 solutions, a quartic-induced d=5 swallowtail, and an anomalous d=6 stability pattern.
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