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Closed-String Tachyons and the Hagedorn Transition in AdS Space

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arxiv hep-th/0112173 v2 pith:AOTNOCVJ submitted 2001-12-19 hep-th

Closed-String Tachyons and the Hagedorn Transition in AdS Space

classification hep-th
keywords blackeuclideanflowhagedornholestringspacesystem
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We discuss some aspects of the behaviour of a string gas at the Hagedorn temperature from a Euclidean point of view. Using AdS space as an infrared regulator, the Hagedorn tachyon can be effectively quasi-localized and its dynamics controled by a finite energetic balance. We propose that the off-shell RG flow matches to an Euclidean AdS black hole geometry in a generalization of the string/black-hole correspondence principle. The final stage of the RG flow can be interpreted semiclassically as the growth of a cool black hole in a hotter radiation bath. The end-point of the condensation is the large Euclidean AdS black hole, and the part of spacetime behind the horizon has been removed. In the flat-space limit, holography is manifest by the system creating its own transverse screen at infinity. This leads to an argument, based on the energetics of the system, explaining why the non-supersymmetric type 0A string theory decays into the supersymmetric type IIB vacuum. We also suggest a notion of `boundary entropy', the value of which decreases along the line of flow.

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  1. AdS Black Holes Are Short-Lived inside the Spectral Form Factor

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    For holographic CFTs on a sphere, the large AdS black hole saddle of the spectral form factor loses dominance at t=O(β) and disconnects from the integration cycle, curing the d≡5 (mod 4) divergence.