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A Signature of Inflation from Dynamical Supersymmetry Breaking

In models of cosmological inflation motivated by dynamical supersymmetry breaking, the potential driving inflation may be characterized by inverse powers of a scalar field. These models produce observables similar to those typical of the hybrid inflation scenario: negligible production of tensor (gr...

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Detalles Bibliográficos
Autores principales: Kinney, William H., Riotto, Antonio
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(98)00780-1
http://cds.cern.ch/record/347394
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author Kinney, William H.
Riotto, Antonio
author_facet Kinney, William H.
Riotto, Antonio
author_sort Kinney, William H.
collection CERN
description In models of cosmological inflation motivated by dynamical supersymmetry breaking, the potential driving inflation may be characterized by inverse powers of a scalar field. These models produce observables similar to those typical of the hybrid inflation scenario: negligible production of tensor (gravitational wave) modes, and a blue scalar spectral index. In this short note, we show that, unlike standard hybrid inflation models, dynamical supersymmetric inflation (DSI) predicts a measurable deviation from a power-law spectrum of fluctuations, with a variation in the scalar spectral index $|dn / d(\ln k)|$ may be as large as 0.05. DSI can be observationally distinguished from other hybrid models with cosmic microwave background measurements of the planned sensitivity of the ESA's Planck Surveyor.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
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spelling cern-3473942023-01-31T11:09:16Zdoi:10.1016/S0370-2693(98)00780-1http://cds.cern.ch/record/347394engKinney, William H.Riotto, AntonioA Signature of Inflation from Dynamical Supersymmetry BreakingParticle Physics - PhenomenologyIn models of cosmological inflation motivated by dynamical supersymmetry breaking, the potential driving inflation may be characterized by inverse powers of a scalar field. These models produce observables similar to those typical of the hybrid inflation scenario: negligible production of tensor (gravitational wave) modes, and a blue scalar spectral index. In this short note, we show that, unlike standard hybrid inflation models, dynamical supersymmetric inflation (DSI) predicts a measurable deviation from a power-law spectrum of fluctuations, with a variation in the scalar spectral index $|dn / d(\ln k)|$ may be as large as 0.05. DSI can be observationally distinguished from other hybrid models with cosmic microwave background measurements of the planned sensitivity of the ESA's Planck Surveyor.In models of cosmological inflation motivated by dynamical supersymmetry breaking, the potential driving inflation may be characterized by inverse powers of a scalar field. These models produce observables similar to those typical of the hybrid inflation scenario: negligible production of tensor (gravitational wave) modes, and a blue scalar spectral index. In this short note, we show that, unlike standard hybrid inflation models, dynamical supersymmetric inflation (DSI) predicts a measurable deviation from a power-law spectrum of fluctuations, with a variation in the scalar spectral index $|dn / d(\ln k)|$ may be as large as 0.05. DSI can be observationally distinguished from other hybrid models with cosmic microwave background measurements of the planned sensitivity of the ESA's Planck Surveyor.In models of cosmological inflation motivated by dynamical supersymmetry breaking, the potential driving inflation may be characterized by inverse powers of a scalar field. These models produce observables similar to those typical of the hybrid inflation scenario: negligible production of tensor (gravitational wave) modes, and a blue scalar spectral index. In this short note, we show that, unlike standard hybrid inflation models, dynamical supersymmetric inflation (DSI) predicts a measurable deviation from a power-law spectrum of fluctuations, with a variation in the scalar spectral index $|dn / d(\ln k)|$ may be as large as 0.05. DSI can be observationally distinguished from other hybrid models with cosmic microwave background measurements of the planned sensitivity of the ESA's Planck Surveyor.In models of cosmological inflation motivated by dynamical supersymmetry breaking, the potential driving inflation is characterized by inverse powers of a scalar field. These models produce observables similar to those typical of the hybrid inflation scenario: negligible production of tensor (gravitational wave) modes, and a blue scalar spectral index. In this short note, we show that, unlike standard hybrid inflation models, dynamical supersymmetric inflation (DSI) predicts a measurable deviation from a power-law spectrum of fluctuations, with a variation in the scalar spectral index | dn / d (ln k )| may be as large as 0.05. DSI can be observationally distinguished from other hybrid models with cosmic microwave background measurements of the planned sensitivity of the ESA's Planck Surveyor.hep-ph/9802443FERMILAB-PUB-98-071-ACERN-TH-98-59OUTP-98-16-PCERN-TH-98-059FERMILAB-PUB-98-071-AOUTP-98-16-Poai:cds.cern.ch:3473941998-03-02
spellingShingle Particle Physics - Phenomenology
Kinney, William H.
Riotto, Antonio
A Signature of Inflation from Dynamical Supersymmetry Breaking
title A Signature of Inflation from Dynamical Supersymmetry Breaking
title_full A Signature of Inflation from Dynamical Supersymmetry Breaking
title_fullStr A Signature of Inflation from Dynamical Supersymmetry Breaking
title_full_unstemmed A Signature of Inflation from Dynamical Supersymmetry Breaking
title_short A Signature of Inflation from Dynamical Supersymmetry Breaking
title_sort signature of inflation from dynamical supersymmetry breaking
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/S0370-2693(98)00780-1
http://cds.cern.ch/record/347394
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