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Evolution Equation for Non-linear Cosmological Perturbations

We present a novel approach, based entirely on the gravitational potential, for studying the evolution of non-linear cosmological matter perturbations. Starting from the perturbed Einstein equations, we integrate out the non-relativistic degrees of freedom of the cosmic fluid and obtain a single clo...

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Detalles Bibliográficos
Autores principales: Brustein, Ram, Riotto, Antonio
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2011/11/006
http://cds.cern.ch/record/1353003
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author Brustein, Ram
Riotto, Antonio
author_facet Brustein, Ram
Riotto, Antonio
author_sort Brustein, Ram
collection CERN
description We present a novel approach, based entirely on the gravitational potential, for studying the evolution of non-linear cosmological matter perturbations. Starting from the perturbed Einstein equations, we integrate out the non-relativistic degrees of freedom of the cosmic fluid and obtain a single closed equation for the gravitational potential. We then verify the validity of the new equation by comparing its approximate solutions to known results in the theory of non-linear cosmological perturbations. First, we show explicitly that the perturbative solution of our equation matches the standard perturbative solutions. Next, using the mean field approximation to the equation, we show that its solution reproduces in a simple way the exponential suppression of the non-linear propagator on small scales due to the velocity dispersion. Our approach can therefore reproduce the main features of the renormalized perturbation theory and (time)-renormalization group approaches to the study of non-linear cosmological perturbations. We conclude by a preliminary discussion of the nature of the full solutions of the equation and their significance.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13530032023-10-04T08:58:07Zdoi:10.1088/1475-7516/2011/11/006http://cds.cern.ch/record/1353003engBrustein, RamRiotto, AntonioEvolution Equation for Non-linear Cosmological PerturbationsAstrophysics and AstronomyWe present a novel approach, based entirely on the gravitational potential, for studying the evolution of non-linear cosmological matter perturbations. Starting from the perturbed Einstein equations, we integrate out the non-relativistic degrees of freedom of the cosmic fluid and obtain a single closed equation for the gravitational potential. We then verify the validity of the new equation by comparing its approximate solutions to known results in the theory of non-linear cosmological perturbations. First, we show explicitly that the perturbative solution of our equation matches the standard perturbative solutions. Next, using the mean field approximation to the equation, we show that its solution reproduces in a simple way the exponential suppression of the non-linear propagator on small scales due to the velocity dispersion. Our approach can therefore reproduce the main features of the renormalized perturbation theory and (time)-renormalization group approaches to the study of non-linear cosmological perturbations. We conclude by a preliminary discussion of the nature of the full solutions of the equation and their significance.We present a novel approach, based entirely on the gravitational potential, for studying the evolution of non-linear cosmological matter perturbations. Starting from the perturbed Einstein equations, we integrate out the non-relativistic degrees of freedom of the cosmic fluid and obtain a single closed equation for the gravitational potential. We then verify the validity of the new equation by comparing its approximate solutions to known results in the theory of non-linear cosmological perturbations. First, we show explicitly that the perturbative solution of our equation matches the standard perturbative solutions. Next, using the mean field approximation to the equation, we show that its solution reproduces in a simple way the exponential suppression of the non-linear propagator on small scales due to the velocity dispersion. Our approach can therefore reproduce the main features of the renormalized perturbation theory and (time)-renormalization group approaches to the study of non-linear cosmological perturbations. We conclude by a preliminary discussion of the nature of the full solutions of the equation and their significance.arXiv:1105.4411CERN-PH-TH-2011-076CERN-PH-TH-2011-076oai:cds.cern.ch:13530032011-05-24
spellingShingle Astrophysics and Astronomy
Brustein, Ram
Riotto, Antonio
Evolution Equation for Non-linear Cosmological Perturbations
title Evolution Equation for Non-linear Cosmological Perturbations
title_full Evolution Equation for Non-linear Cosmological Perturbations
title_fullStr Evolution Equation for Non-linear Cosmological Perturbations
title_full_unstemmed Evolution Equation for Non-linear Cosmological Perturbations
title_short Evolution Equation for Non-linear Cosmological Perturbations
title_sort evolution equation for non-linear cosmological perturbations
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1088/1475-7516/2011/11/006
http://cds.cern.ch/record/1353003
work_keys_str_mv AT brusteinram evolutionequationfornonlinearcosmologicalperturbations
AT riottoantonio evolutionequationfornonlinearcosmologicalperturbations