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Semiclassical relations and IR effects in de Sitter and slow-roll space-times

We calculate IR divergent graviton one-loop corrections to scalar correlators in de Sitter space, and show that the leading IR contribution may be reproduced via simple semiclassical consistency relations. One can likewise use such semiclassical relations to calculate leading IR corrections to corre...

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Detalles Bibliográficos
Autores principales: Giddings, Steven B, Sloth, Martin S
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2011/01/023
http://cds.cern.ch/record/1264297
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author Giddings, Steven B
Sloth, Martin S
author_facet Giddings, Steven B
Sloth, Martin S
author_sort Giddings, Steven B
collection CERN
description We calculate IR divergent graviton one-loop corrections to scalar correlators in de Sitter space, and show that the leading IR contribution may be reproduced via simple semiclassical consistency relations. One can likewise use such semiclassical relations to calculate leading IR corrections to correlators in slow-roll inflation. The regulated corrections shift the tensor/scalar ratio and consistency relation of single field inflation, and non-gaussianity parameters averaged over very large distances. For inflation of sufficient duration, for example arising from a chaotic inflationary scenario, these corrections become of order unity. First-order corrections of this size indicate a breakdown of the perturbative expansion, and suggest the need for a non-perturbative description of the corresponding regime. This is analogous to a situation argued to arise in black hole evolution, and to interfere with a sharp perturbative calculation of "missing information" in Hawking radiation.
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spelling cern-12642972019-09-30T06:29:59Zdoi:10.1088/1475-7516/2011/01/023http://cds.cern.ch/record/1264297engGiddings, Steven BSloth, Martin SSemiclassical relations and IR effects in de Sitter and slow-roll space-timesParticle Physics - TheoryWe calculate IR divergent graviton one-loop corrections to scalar correlators in de Sitter space, and show that the leading IR contribution may be reproduced via simple semiclassical consistency relations. One can likewise use such semiclassical relations to calculate leading IR corrections to correlators in slow-roll inflation. The regulated corrections shift the tensor/scalar ratio and consistency relation of single field inflation, and non-gaussianity parameters averaged over very large distances. For inflation of sufficient duration, for example arising from a chaotic inflationary scenario, these corrections become of order unity. First-order corrections of this size indicate a breakdown of the perturbative expansion, and suggest the need for a non-perturbative description of the corresponding regime. This is analogous to a situation argued to arise in black hole evolution, and to interfere with a sharp perturbative calculation of "missing information" in Hawking radiation.arXiv:1005.1056CERN-PH-TH-2010-095oai:cds.cern.ch:12642972010-05-07
spellingShingle Particle Physics - Theory
Giddings, Steven B
Sloth, Martin S
Semiclassical relations and IR effects in de Sitter and slow-roll space-times
title Semiclassical relations and IR effects in de Sitter and slow-roll space-times
title_full Semiclassical relations and IR effects in de Sitter and slow-roll space-times
title_fullStr Semiclassical relations and IR effects in de Sitter and slow-roll space-times
title_full_unstemmed Semiclassical relations and IR effects in de Sitter and slow-roll space-times
title_short Semiclassical relations and IR effects in de Sitter and slow-roll space-times
title_sort semiclassical relations and ir effects in de sitter and slow-roll space-times
topic Particle Physics - Theory
url https://dx.doi.org/10.1088/1475-7516/2011/01/023
http://cds.cern.ch/record/1264297
work_keys_str_mv AT giddingsstevenb semiclassicalrelationsandireffectsindesitterandslowrollspacetimes
AT slothmartins semiclassicalrelationsandireffectsindesitterandslowrollspacetimes