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Anisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fields

We consider a primordial SU(2) vector multiplet during inflation in models where quantum fluctuations of vector fields are involved in producing the curvature perturbation. Recently, a lot of attention has been paid to models populated by vector fields, given the interesting possibility of generatin...

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Autores principales: Bartolo, Nicola, Dimastrogiovanni, Emanuela, Matarrese, Sabino, Riotto, Antonio
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2009/10/015
http://cds.cern.ch/record/1186633
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author Bartolo, Nicola
Dimastrogiovanni, Emanuela
Matarrese, Sabino
Riotto, Antonio
author_facet Bartolo, Nicola
Dimastrogiovanni, Emanuela
Matarrese, Sabino
Riotto, Antonio
author_sort Bartolo, Nicola
collection CERN
description We consider a primordial SU(2) vector multiplet during inflation in models where quantum fluctuations of vector fields are involved in producing the curvature perturbation. Recently, a lot of attention has been paid to models populated by vector fields, given the interesting possibility of generating some level of statistical anisotropy in the cosmological perturbations. The scenario we propose is strongly motivated by the fact that, for non-Abelian gauge fields, self-interactions are responsible for generating extra terms in the cosmological correlation functions, which are naturally absent in the Abelian case. We compute these extra contributions to the bispectrum of the curvature perturbation, using the delta N formula and the Schwinger-Keldysh formalism. The primordial violation of rotational invariance (due to the introduction of the SU(2) gauge multiplet) leaves its imprint on the correlation functions introducing, as expected, some degree of statistical anisotropy in our results. We calculate the non-Gaussianity parameter f_{NL}, proving that the new contributions derived from gauge bosons self-interactions can be important, and in some cases the dominat ones. We study the shape of the bispectrum and we find that it turns out to peak in the local configuration, with an amplitude that is modulated by the preferred directions that break statistical isotropy.
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spelling cern-11866332023-03-15T19:11:39Zdoi:10.1088/1475-7516/2009/10/015http://cds.cern.ch/record/1186633engBartolo, NicolaDimastrogiovanni, EmanuelaMatarrese, SabinoRiotto, AntonioAnisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fieldsAstrophysics and AstronomyWe consider a primordial SU(2) vector multiplet during inflation in models where quantum fluctuations of vector fields are involved in producing the curvature perturbation. Recently, a lot of attention has been paid to models populated by vector fields, given the interesting possibility of generating some level of statistical anisotropy in the cosmological perturbations. The scenario we propose is strongly motivated by the fact that, for non-Abelian gauge fields, self-interactions are responsible for generating extra terms in the cosmological correlation functions, which are naturally absent in the Abelian case. We compute these extra contributions to the bispectrum of the curvature perturbation, using the delta N formula and the Schwinger-Keldysh formalism. The primordial violation of rotational invariance (due to the introduction of the SU(2) gauge multiplet) leaves its imprint on the correlation functions introducing, as expected, some degree of statistical anisotropy in our results. We calculate the non-Gaussianity parameter f_{NL}, proving that the new contributions derived from gauge bosons self-interactions can be important, and in some cases the dominat ones. We study the shape of the bispectrum and we find that it turns out to peak in the local configuration, with an amplitude that is modulated by the preferred directions that break statistical isotropy.We consider a primordial SU(2) vector multiplet during inflation in models where quantum fluctuations of vector fields are involved in producing the curvature perturbation. Recently, a lot of attention has been paid to models populated by vector fields, given the interesting possibility of generating some level of statistical anisotropy in the cosmological perturbations. The scenario we propose is strongly motivated by the fact that, for non-Abelian gauge fields, self-interactions are responsible for generating extra terms in the cosmological correlation functions, which are naturally absent in the Abelian case. We compute these extra contributions to the bispectrum of the curvature perturbation, using the delta N formula and the Schwinger-Keldysh formalism. The primordial violation of rotational invariance (due to the introduction of the SU(2) gauge multiplet) leaves its imprint on the correlation functions introducing, as expected, some degree of statistical anisotropy in our results. We calculate the non-Gaussianity parameter f_{NL}, proving that the new contributions derived from gauge bosons self-interactions can be important, and in some cases the dominat ones. We study the shape of the bispectrum and we find that it turns out to peak in the local configuration, with an amplitude that is modulated by the preferred directions that break statistical isotropy.arXiv:0906.4944DFPD-09-A-12--CERN-PH-TH-2009-097CERN-PH-TH-2009-097DFPD-09-A-12oai:cds.cern.ch:11866332009-06-29
spellingShingle Astrophysics and Astronomy
Bartolo, Nicola
Dimastrogiovanni, Emanuela
Matarrese, Sabino
Riotto, Antonio
Anisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fields
title Anisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fields
title_full Anisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fields
title_fullStr Anisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fields
title_full_unstemmed Anisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fields
title_short Anisotropic bispectrum of curvature perturbations from primordial non-Abelian vector fields
title_sort anisotropic bispectrum of curvature perturbations from primordial non-abelian vector fields
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1088/1475-7516/2009/10/015
http://cds.cern.ch/record/1186633
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AT matarresesabino anisotropicbispectrumofcurvatureperturbationsfromprimordialnonabelianvectorfields
AT riottoantonio anisotropicbispectrumofcurvatureperturbationsfromprimordialnonabelianvectorfields