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Tight coupling expansion and fully inhomogeneous magnetic fields

The tight coupling expansion, appropriately generalized to include large-scale magnetic fields, allows the estimate of the brightness perturbations of CMB anisotropies for typical wavelengths that are larger than the Hubble radius after matter-radiation equality. After discussing the basic features...

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Autor principal: Giovannini, Massimo
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.74.063002
http://cds.cern.ch/record/967923
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author Giovannini, Massimo
author_facet Giovannini, Massimo
author_sort Giovannini, Massimo
collection CERN
description The tight coupling expansion, appropriately generalized to include large-scale magnetic fields, allows the estimate of the brightness perturbations of CMB anisotropies for typical wavelengths that are larger than the Hubble radius after matter-radiation equality. After discussing the basic features of the the pre-decoupling initial conditions in the presence of fully inhomogeneous magnetic fields, the tight coupling expansion is studied both analytically and numerically. From the requirement that the amplitudes and phases of Sakharov oscillations are (predominantly) adiabatic and from the inferred value of the plateau in the temperature autocorrelation, the effects of the magnetized contribution can be systematically investigated and constrained.
id cern-967923
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
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spelling cern-9679232023-03-14T18:48:40Zdoi:10.1103/PhysRevD.74.063002http://cds.cern.ch/record/967923engGiovannini, MassimoTight coupling expansion and fully inhomogeneous magnetic fieldsAstrophysics and AstronomyThe tight coupling expansion, appropriately generalized to include large-scale magnetic fields, allows the estimate of the brightness perturbations of CMB anisotropies for typical wavelengths that are larger than the Hubble radius after matter-radiation equality. After discussing the basic features of the the pre-decoupling initial conditions in the presence of fully inhomogeneous magnetic fields, the tight coupling expansion is studied both analytically and numerically. From the requirement that the amplitudes and phases of Sakharov oscillations are (predominantly) adiabatic and from the inferred value of the plateau in the temperature autocorrelation, the effects of the magnetized contribution can be systematically investigated and constrained.The tight coupling expansion, appropriately generalized to include large-scale magnetic fields, allows the estimate of the brightness perturbations of CMB anisotropies for typical wavelengths that are larger than the Hubble radius after matter-radiation equality. After discussing the basic features of the the pre-decoupling initial conditions in the presence of fully inhomogeneous magnetic fields, the tight coupling expansion is studied both analytically and numerically. From the requirement that the amplitudes and phases of Sakharov oscillations are (predominantly) adiabatic and from the inferred value of the plateau in the temperature autocorrelation, the effects of the magnetized contribution can be systematically investigated and constrained.astro-ph/0606759CERN-PH-TH-2006-109CERN-PH-TH-2006-109oai:cds.cern.ch:9679232006-06-30
spellingShingle Astrophysics and Astronomy
Giovannini, Massimo
Tight coupling expansion and fully inhomogeneous magnetic fields
title Tight coupling expansion and fully inhomogeneous magnetic fields
title_full Tight coupling expansion and fully inhomogeneous magnetic fields
title_fullStr Tight coupling expansion and fully inhomogeneous magnetic fields
title_full_unstemmed Tight coupling expansion and fully inhomogeneous magnetic fields
title_short Tight coupling expansion and fully inhomogeneous magnetic fields
title_sort tight coupling expansion and fully inhomogeneous magnetic fields
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1103/PhysRevD.74.063002
http://cds.cern.ch/record/967923
work_keys_str_mv AT giovanninimassimo tightcouplingexpansionandfullyinhomogeneousmagneticfields