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Автор Michal Fabinger
Автор Eva Silverstein
Дата выпуска 2004-12-01
dc.description We study the entropy of concrete de Sitter flux compactifications and deformations of them containing D-brane domain walls. We determine the relevant causal and thermodynamic properties of these ``D-Sitter" deformations of de Sitter spacetimes. We find a string scale correspondence point at which the entropy localized on the D-branes (and measured by probes sent from an observer in the middle of the bubble) scales the same with large flux quantum numbers as the entropy of the original de Sitter space, and at which Bousso's bound is saturated by the D-brane degrees of freedom (up to order one coefficients) for an infinite range of times. From the geometry of a static patch of D-Sitter space and from basic relations in flux compactifications, we find support for the possibility of a low energy open string description of the static patch of de Sitter space.
Формат application.pdf
Издатель Institute of Physics Publishing
Название D-Sitter space: causal structure, thermodynamics, and entropy
Тип paper
DOI 10.1088/1126-6708/2004/12/061
Electronic ISSN 1029- 8479
Print ISSN 1126-6708
Журнал Journal of High Energy Physics
Том 2004
Первая страница 61
Последняя страница 061
Выпуск 12

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