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Out of equilibrium: understanding cosmological evolution to lower-entropy states

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arxiv 1108.0417 v1 pith:HN22P4HN submitted 2011-08-01 hep-th astro-ph.COcond-mat.stat-mechgr-qc

classification hep-thastro-ph.COcond-mat.stat-mechgr-qc
keywords equilibriumfluctuationstimelikelylower-entropysitterspacestates
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Despite the importance of the Second Law of Thermodynamics, it is not absolute. Statistical mechanics implies that, given sufficient time, systems near equilibrium will spontaneously fluctuate into lower-entropy states, locally reversing the thermodynamic arrow of time. We study the time development of such fluctuations, especially the very large fluctuations relevant to cosmology. Under fairly general assumptions, the most likely history of a fluctuation out of equilibrium is simply the CPT conjugate of the most likely way a system relaxes back to equilibrium. We use this idea to elucidate the spacetime structure of various fluctuations in (stable and metastable) de Sitter space and thermal anti-de Sitter space.

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  1. The Case For Black Hole Remnants: A Review

    gr-qc 2024-11 unverdicted novelty 2.0 of 10

    A review arguing that black hole remnants remain viable and that the species and entropy objections to them are not decisive, so remnants could resolve the information paradox.

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