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Constraints on Dirac-Born-Infeld type dark energy models from varying alpha

نویسنده:
محمدرضا گروسی
,
M. Sami
,
Shinji Tsujikawa
,
Mohammad Reza Garousi
سال
: 2005
چکیده: We study the variation of the effective fine structure constant alpha for Dirac-Born-Infeld (DBI) type dark energy models. The DBI action based on string theory naturally gives rise to a coupling between gauge fields and a scalar field responsible for accelerated expansion of the universe. This leads to the change of alpha due to a dynamical evolution of the scalar field, which can be compatible with the recently observed cosmological data around the redshift $\\\\tilde{z} \\\\lesssim 3$. We place constraints on several different DBI models including exponential, inverse power-law and rolling massive scalar potentials. We find that these models can satisfy the varying alpha constraint provided that mass scales of the potentials are fine-tuned. When we adopt the mass scales which are motivated by string theory, both exponential and inverse power-law potentials give unacceptably large change of alpha, thus ruled out from observations. On the other hand the rolling massive scalar potential is compatible with the observationally allowed variation of alpha. Therefore the information of varying alpha provides a powerful way to distinguish between a number of string-inspired DBI dark energy models.
یو آر آی: https://libsearch.um.ac.ir:443/fum/handle/fum/3343622
کلیدواژه(گان): Tachyon action,Dark energy
کالکشن :
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    Constraints on Dirac-Born-Infeld type dark energy models from varying alpha

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contributor authorمحمدرضا گروسیen
contributor authorM. Samien
contributor authorShinji Tsujikawaen
contributor authorMohammad Reza Garousifa
date accessioned2020-06-06T13:09:08Z
date available2020-06-06T13:09:08Z
date issued2005
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3343622
description abstractWe study the variation of the effective fine structure constant alpha for Dirac-Born-Infeld (DBI) type dark energy models. The DBI action based on string theory naturally gives rise to a coupling between gauge fields and a scalar field responsible for accelerated expansion of the universe. This leads to the change of alpha due to a dynamical evolution of the scalar field, which can be compatible with the recently observed cosmological data around the redshift $\\\\tilde{z} \\\\lesssim 3$. We place constraints on several different DBI models including exponential, inverse power-law and rolling massive scalar potentials. We find that these models can satisfy the varying alpha constraint provided that mass scales of the potentials are fine-tuned. When we adopt the mass scales which are motivated by string theory, both exponential and inverse power-law potentials give unacceptably large change of alpha, thus ruled out from observations. On the other hand the rolling massive scalar potential is compatible with the observationally allowed variation of alpha. Therefore the information of varying alpha provides a powerful way to distinguish between a number of string-inspired DBI dark energy models.en
languageEnglish
titleConstraints on Dirac-Born-Infeld type dark energy models from varying alphaen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsTachyon actionen
subject keywordsDark energyen
journal titlePhysical Review Den
journal titlePhysical Review Dfa
journal volume0
journal issue0
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-201567.html
identifier articleid201567
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