Constraining inflationary scenarios with braneworld models and second order cosmological perturbations

Inflationary cosmology is the leading explanation of the very early universe. Many diff erent models of inflation have been constructed which fit current observational data. In this work theoretical and numerical methods for constraining the parameter space of a wide class of such models are describ...

Full description

Bibliographic Details
Main Author: Huston, Ian
Published: Queen Mary, University of London 2010
Subjects:
520
Online Access:https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.516704
id ndltd-bl.uk-oai-ethos.bl.uk-516704
record_format oai_dc
spelling ndltd-bl.uk-oai-ethos.bl.uk-5167042019-02-27T03:25:25ZConstraining inflationary scenarios with braneworld models and second order cosmological perturbationsHuston, Ian2010Inflationary cosmology is the leading explanation of the very early universe. Many diff erent models of inflation have been constructed which fit current observational data. In this work theoretical and numerical methods for constraining the parameter space of a wide class of such models are described. First, string-theoretic models with large non-Gaussian signatures are investigated. An upper bound is placed on the amplitude of primordial gravitational waves produced by ultra-violet Dirac-Born-Infeld inflation. In all but the most finely tuned cases, this bound is incompatible with a lower bound derived for inflationary models which exhibit a red spectrum and detectable non-Gaussianity. By analysing general non-canonical actions, a class of models is found which can evade the upper bound when the phase speed of perturbations is small. The multicoincident brane scenario with a finite number of branes is one such model. For models with a potentially observable gravitational wave spectrum the number of coincident branes is shown to take only small values. The second method of constraining inflationary models is the numerical calculation of second order perturbations for a general class of single fi eld models. The Klein-Gordon equation at second order, written in terms of scalar field variations only, is numerically solved. The slow roll version of the second order source term is used and the method is shown to be extendable to the full equation. This procedure allows the evolution of second order perturbations in general and the calculation of the non-Gaussianity parameter in cases where there is no analytical solution available.520AstronomyQueen Mary, University of Londonhttps://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.516704http://qmro.qmul.ac.uk/xmlui/handle/123456789/584Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 520
Astronomy
spellingShingle 520
Astronomy
Huston, Ian
Constraining inflationary scenarios with braneworld models and second order cosmological perturbations
description Inflationary cosmology is the leading explanation of the very early universe. Many diff erent models of inflation have been constructed which fit current observational data. In this work theoretical and numerical methods for constraining the parameter space of a wide class of such models are described. First, string-theoretic models with large non-Gaussian signatures are investigated. An upper bound is placed on the amplitude of primordial gravitational waves produced by ultra-violet Dirac-Born-Infeld inflation. In all but the most finely tuned cases, this bound is incompatible with a lower bound derived for inflationary models which exhibit a red spectrum and detectable non-Gaussianity. By analysing general non-canonical actions, a class of models is found which can evade the upper bound when the phase speed of perturbations is small. The multicoincident brane scenario with a finite number of branes is one such model. For models with a potentially observable gravitational wave spectrum the number of coincident branes is shown to take only small values. The second method of constraining inflationary models is the numerical calculation of second order perturbations for a general class of single fi eld models. The Klein-Gordon equation at second order, written in terms of scalar field variations only, is numerically solved. The slow roll version of the second order source term is used and the method is shown to be extendable to the full equation. This procedure allows the evolution of second order perturbations in general and the calculation of the non-Gaussianity parameter in cases where there is no analytical solution available.
author Huston, Ian
author_facet Huston, Ian
author_sort Huston, Ian
title Constraining inflationary scenarios with braneworld models and second order cosmological perturbations
title_short Constraining inflationary scenarios with braneworld models and second order cosmological perturbations
title_full Constraining inflationary scenarios with braneworld models and second order cosmological perturbations
title_fullStr Constraining inflationary scenarios with braneworld models and second order cosmological perturbations
title_full_unstemmed Constraining inflationary scenarios with braneworld models and second order cosmological perturbations
title_sort constraining inflationary scenarios with braneworld models and second order cosmological perturbations
publisher Queen Mary, University of London
publishDate 2010
url https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.516704
work_keys_str_mv AT hustonian constraininginflationaryscenarioswithbraneworldmodelsandsecondordercosmologicalperturbations
_version_ 1718984148610187264