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Effective theories of single field inflation when heavy fields matter

We compute the low energy effective field theory (EFT) expansion for single-field inflationary models that descend from a parent theory containing multiple other scalar fields. By assuming that all other degrees of freedom in the parent theory are sufficiently massive relative to the inflaton, it is...

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Autores principales: Achucarro, Ana, Gong, Jinn-Ouk, Hardeman, Sjoerd, Palma, Gonzalo A, Patil, Subodh P
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP05(2012)066
http://cds.cern.ch/record/1420515
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author Achucarro, Ana
Gong, Jinn-Ouk
Hardeman, Sjoerd
Palma, Gonzalo A
Patil, Subodh P
author_facet Achucarro, Ana
Gong, Jinn-Ouk
Hardeman, Sjoerd
Palma, Gonzalo A
Patil, Subodh P
author_sort Achucarro, Ana
collection CERN
description We compute the low energy effective field theory (EFT) expansion for single-field inflationary models that descend from a parent theory containing multiple other scalar fields. By assuming that all other degrees of freedom in the parent theory are sufficiently massive relative to the inflaton, it is possible to derive an EFT valid to arbitrary order in perturbations, provided certain generalized adiabaticity conditions are respected. These conditions permit a consistent low energy EFT description even when the inflaton deviates off its adiabatic minimum along its slowly rolling trajectory. By generalizing the formalism that identifies the adiabatic mode with the Goldstone boson of this spontaneously broken time translational symmetry prior to the integration of the heavy fields, we show that this invariance of the parent theory dictates the entire non-perturbative structure of the descendent EFT. The couplings of this theory can be written entirely in terms of the reduced speed of sound of adiabatic perturbations. The resulting operator expansion is distinguishable from that of other scenarios, such as standard single inflation or DBI inflation. In particular, we re-derive how certain operators can become transiently strongly coupled along the inflaton trajectory, consistent with slow-roll and the validity of the EFT expansion, imprinting features in the primordial power spectrum, and we deduce the relevant cubic operators that imply distinct signatures in the primordial bispectrum which may soon be constrained by observations.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
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spelling cern-14205152019-09-30T06:29:59Zdoi:10.1007/JHEP05(2012)066http://cds.cern.ch/record/1420515engAchucarro, AnaGong, Jinn-OukHardeman, SjoerdPalma, Gonzalo APatil, Subodh PEffective theories of single field inflation when heavy fields matterParticle Physics - TheoryWe compute the low energy effective field theory (EFT) expansion for single-field inflationary models that descend from a parent theory containing multiple other scalar fields. By assuming that all other degrees of freedom in the parent theory are sufficiently massive relative to the inflaton, it is possible to derive an EFT valid to arbitrary order in perturbations, provided certain generalized adiabaticity conditions are respected. These conditions permit a consistent low energy EFT description even when the inflaton deviates off its adiabatic minimum along its slowly rolling trajectory. By generalizing the formalism that identifies the adiabatic mode with the Goldstone boson of this spontaneously broken time translational symmetry prior to the integration of the heavy fields, we show that this invariance of the parent theory dictates the entire non-perturbative structure of the descendent EFT. The couplings of this theory can be written entirely in terms of the reduced speed of sound of adiabatic perturbations. The resulting operator expansion is distinguishable from that of other scenarios, such as standard single inflation or DBI inflation. In particular, we re-derive how certain operators can become transiently strongly coupled along the inflaton trajectory, consistent with slow-roll and the validity of the EFT expansion, imprinting features in the primordial power spectrum, and we deduce the relevant cubic operators that imply distinct signatures in the primordial bispectrum which may soon be constrained by observations.arXiv:1201.6342CERN-PH-TH-2011-222CPHT-RR 055.0711LPTENS-11-27oai:cds.cern.ch:14205152012-01-31
spellingShingle Particle Physics - Theory
Achucarro, Ana
Gong, Jinn-Ouk
Hardeman, Sjoerd
Palma, Gonzalo A
Patil, Subodh P
Effective theories of single field inflation when heavy fields matter
title Effective theories of single field inflation when heavy fields matter
title_full Effective theories of single field inflation when heavy fields matter
title_fullStr Effective theories of single field inflation when heavy fields matter
title_full_unstemmed Effective theories of single field inflation when heavy fields matter
title_short Effective theories of single field inflation when heavy fields matter
title_sort effective theories of single field inflation when heavy fields matter
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP05(2012)066
http://cds.cern.ch/record/1420515
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