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$\delta N$ formalism from superpotential and holography

We consider the superpotential formalism to describe the evolution of scalar fields during inflation, generalizing it to include the case with non-canonical kinetic terms. We provide a characterization of the attractor behaviour of the background evolution in terms of first and second slow-roll para...

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Detalles Bibliográficos
Autores principales: Garriga, Jaume, Urakawa, Yuko, Vernizzi, Filippo
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2016/02/036
http://cds.cern.ch/record/2055073
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author Garriga, Jaume
Urakawa, Yuko
Vernizzi, Filippo
author_facet Garriga, Jaume
Urakawa, Yuko
Vernizzi, Filippo
author_sort Garriga, Jaume
collection CERN
description We consider the superpotential formalism to describe the evolution of scalar fields during inflation, generalizing it to include the case with non-canonical kinetic terms. We provide a characterization of the attractor behaviour of the background evolution in terms of first and second slow-roll parameters (which need not be small). We find that the superpotential is useful in justifying the separate universe approximation from the gradient expansion, and also in computing the spectra of primordial perturbations around attractor solutions in the $\delta N$ formalism. As an application, we consider a class of models where the background trajectories for the inflaton fields are derived from a product separable superpotential. In the perspective of the holographic inflation scenario, such models are dual to a deformed CFT boundary theory, with $D$ mutually uncorrelated deformation operators. We compute the bulk power spectra of primordial adiabatic and entropy cosmological perturbations, and show that the results agree with the ones obtained by using conformal perturbation theory in the dual picture.
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spelling cern-20550732023-10-04T08:49:14Zdoi:10.1088/1475-7516/2016/02/036http://cds.cern.ch/record/2055073engGarriga, JaumeUrakawa, YukoVernizzi, Filippo$\delta N$ formalism from superpotential and holographyParticle Physics - TheoryWe consider the superpotential formalism to describe the evolution of scalar fields during inflation, generalizing it to include the case with non-canonical kinetic terms. We provide a characterization of the attractor behaviour of the background evolution in terms of first and second slow-roll parameters (which need not be small). We find that the superpotential is useful in justifying the separate universe approximation from the gradient expansion, and also in computing the spectra of primordial perturbations around attractor solutions in the $\delta N$ formalism. As an application, we consider a class of models where the background trajectories for the inflaton fields are derived from a product separable superpotential. In the perspective of the holographic inflation scenario, such models are dual to a deformed CFT boundary theory, with $D$ mutually uncorrelated deformation operators. We compute the bulk power spectra of primordial adiabatic and entropy cosmological perturbations, and show that the results agree with the ones obtained by using conformal perturbation theory in the dual picture.We consider the superpotential formalism to describe the evolution of D scalar fields during inflation, generalizing it to include the case with non-canonical kinetic terms. We provide a characterization of the attractor behaviour of the background evolution in terms of first and second slow-roll parameters (which need not be small). We find that the superpotential is useful in justifying the separate universe approximation from the gradient expansion, and also in computing the spectra of primordial perturbations around attractor solutions in the δN formalism. As an application, we consider a class of models where the background trajectories for the inflaton fields are derived from a product separable superpotential. In the perspective of the holographic inflation scenario, such models are dual to a deformed CFT boundary theory, with D mutually uncorrelated deformation operators. We compute the bulk power spectra of primordial adiabatic and entropy cosmological perturbations, and show that the results agree with the ones obtained by using conformal perturbation theory in the dual picture.We consider the superpotential formalism to describe the evolution of scalar fields during inflation, generalizing it to include the case with non-canonical kinetic terms. We provide a characterization of the attractor behaviour of the background evolution in terms of first and second slow-roll parameters (which need not be small). We find that the superpotential is useful in justifying the separate universe approximation from the gradient expansion, and also in computing the spectra of primordial perturbations around attractor solutions in the $\delta N$ formalism. As an application, we consider a class of models where the background trajectories for the inflaton fields are derived from a product separable superpotential. In the perspective of the holographic inflation scenario, such models are dual to a deformed CFT boundary theory, with $D$ mutually uncorrelated deformation operators. We compute the bulk power spectra of primordial adiabatic and entropy cosmological perturbations, and show that the results agree with the ones obtained by using conformal perturbation theory in the dual picture.arXiv:1509.07339CERN-PH-TH-2015-231CERN-PH-TH-2015-231oai:cds.cern.ch:20550732015-09-24
spellingShingle Particle Physics - Theory
Garriga, Jaume
Urakawa, Yuko
Vernizzi, Filippo
$\delta N$ formalism from superpotential and holography
title $\delta N$ formalism from superpotential and holography
title_full $\delta N$ formalism from superpotential and holography
title_fullStr $\delta N$ formalism from superpotential and holography
title_full_unstemmed $\delta N$ formalism from superpotential and holography
title_short $\delta N$ formalism from superpotential and holography
title_sort $\delta n$ formalism from superpotential and holography
topic Particle Physics - Theory
url https://dx.doi.org/10.1088/1475-7516/2016/02/036
http://cds.cern.ch/record/2055073
work_keys_str_mv AT garrigajaume deltanformalismfromsuperpotentialandholography
AT urakawayuko deltanformalismfromsuperpotentialandholography
AT vernizzifilippo deltanformalismfromsuperpotentialandholography