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Large scale structure from biased non-equilibrium phase transitions: percolation theory picture

We give an analytical description of the spatial distribution of domain walls produced during a biased nonequilibrium phase transition in the vacuum state of a light scalar field. We discuss in detail the spectrum of the associated cosmological energy density perturbations. It is shown that the cont...

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Detalles Bibliográficos
Autores principales: Lalak, Z, Lola, S, Ovrut, B A, Ross, Graham G
Lenguaje:eng
Publicado: 1994
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0550-3213(94)00557-U
http://cds.cern.ch/record/261343
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author Lalak, Z
Lola, S
Ovrut, B A
Ross, Graham G
author_facet Lalak, Z
Lola, S
Ovrut, B A
Ross, Graham G
author_sort Lalak, Z
collection CERN
description We give an analytical description of the spatial distribution of domain walls produced during a biased nonequilibrium phase transition in the vacuum state of a light scalar field. We discuss in detail the spectrum of the associated cosmological energy density perturbations. It is shown that the contribution coming from domain walls can enhance the standard cold dark matter spectrum in such a way as to account for the whole range of IRAS data and for the COBE measurement of the microwave background anisotropy. We also demonstrate that in case of a biased phase transition which allows a percolative description, the number of large size domain walls is strongly suppressed. This offers a way of avoiding excessive microwave background distorsions due to the gravitational field of domain walls present after decoupling.
id cern-261343
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1994
record_format invenio
spelling cern-2613432019-09-30T06:29:59Zdoi:10.1016/0550-3213(94)00557-Uhttp://cds.cern.ch/record/261343engLalak, ZLola, SOvrut, B ARoss, Graham GLarge scale structure from biased non-equilibrium phase transitions: percolation theory pictureOther Fields of PhysicsWe give an analytical description of the spatial distribution of domain walls produced during a biased nonequilibrium phase transition in the vacuum state of a light scalar field. We discuss in detail the spectrum of the associated cosmological energy density perturbations. It is shown that the contribution coming from domain walls can enhance the standard cold dark matter spectrum in such a way as to account for the whole range of IRAS data and for the COBE measurement of the microwave background anisotropy. We also demonstrate that in case of a biased phase transition which allows a percolative description, the number of large size domain walls is strongly suppressed. This offers a way of avoiding excessive microwave background distorsions due to the gravitational field of domain walls present after decoupling.hep-ph/9404218CERN-TH-6995-93OUTP-93-22-PTUM-TH-159oai:cds.cern.ch:2613431994-04-05
spellingShingle Other Fields of Physics
Lalak, Z
Lola, S
Ovrut, B A
Ross, Graham G
Large scale structure from biased non-equilibrium phase transitions: percolation theory picture
title Large scale structure from biased non-equilibrium phase transitions: percolation theory picture
title_full Large scale structure from biased non-equilibrium phase transitions: percolation theory picture
title_fullStr Large scale structure from biased non-equilibrium phase transitions: percolation theory picture
title_full_unstemmed Large scale structure from biased non-equilibrium phase transitions: percolation theory picture
title_short Large scale structure from biased non-equilibrium phase transitions: percolation theory picture
title_sort large scale structure from biased non-equilibrium phase transitions: percolation theory picture
topic Other Fields of Physics
url https://dx.doi.org/10.1016/0550-3213(94)00557-U
http://cds.cern.ch/record/261343
work_keys_str_mv AT lalakz largescalestructurefrombiasednonequilibriumphasetransitionspercolationtheorypicture
AT lolas largescalestructurefrombiasednonequilibriumphasetransitionspercolationtheorypicture
AT ovrutba largescalestructurefrombiasednonequilibriumphasetransitionspercolationtheorypicture
AT rossgrahamg largescalestructurefrombiasednonequilibriumphasetransitionspercolationtheorypicture