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An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse

We give an explicit realization of the "String Axiverse" discussed in Arvanitaki et. al \cite{Arvanitaki:2009fg} by extending our previous results on moduli stabilization in $M$ theory to include axions. We extend the analysis of \cite{Arvanitaki:2009fg} to allow for high scale inflation t...

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Autores principales: Acharya, Bobby Samir, Bobkov, Konstantin, Kumar, Piyush
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1262655
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author Acharya, Bobby Samir
Bobkov, Konstantin
Kumar, Piyush
author_facet Acharya, Bobby Samir
Bobkov, Konstantin
Kumar, Piyush
author_sort Acharya, Bobby Samir
collection CERN
description We give an explicit realization of the "String Axiverse" discussed in Arvanitaki et. al \cite{Arvanitaki:2009fg} by extending our previous results on moduli stabilization in $M$ theory to include axions. We extend the analysis of \cite{Arvanitaki:2009fg} to allow for high scale inflation that leads to a moduli dominated pre-BBN Universe. We demonstrate that an axion which solves the strong-CP problem naturally arises and that both the axion decay constants and GUT scale can consistently be around $2\times 10^{16}$ GeV with a much smaller fine tuning than is usually expected. Constraints on the Axiverse from cosmological observations, namely isocurvature perturbations and tensor modes are described. Extending work of Fox et. al \cite{Fox:2004kb}, we note that {\it the observation of tensor modes at Planck will falsify the Axiverse completely.} Finally we note that Axiverse models whose lightest axion has mass of order $10^{-15}$ eV and with decay constants of order $5\times 10^{14}$ GeV require no (anthropic) fine-tuning, though standard unification at $10^{16}$ GeV is difficult to accommodate.
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spelling cern-12626552019-09-30T06:29:59Z http://cds.cern.ch/record/1262655 eng Acharya, Bobby Samir Bobkov, Konstantin Kumar, Piyush An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse Particle Physics - Theory We give an explicit realization of the "String Axiverse" discussed in Arvanitaki et. al \cite{Arvanitaki:2009fg} by extending our previous results on moduli stabilization in $M$ theory to include axions. We extend the analysis of \cite{Arvanitaki:2009fg} to allow for high scale inflation that leads to a moduli dominated pre-BBN Universe. We demonstrate that an axion which solves the strong-CP problem naturally arises and that both the axion decay constants and GUT scale can consistently be around $2\times 10^{16}$ GeV with a much smaller fine tuning than is usually expected. Constraints on the Axiverse from cosmological observations, namely isocurvature perturbations and tensor modes are described. Extending work of Fox et. al \cite{Fox:2004kb}, we note that {\it the observation of tensor modes at Planck will falsify the Axiverse completely.} Finally we note that Axiverse models whose lightest axion has mass of order $10^{-15}$ eV and with decay constants of order $5\times 10^{14}$ GeV require no (anthropic) fine-tuning, though standard unification at $10^{16}$ GeV is difficult to accommodate. info:eu-repo/grantAgreement/EC/FP7/237920 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1262655 2010-04-30
spellingShingle Particle Physics - Theory
Acharya, Bobby Samir
Bobkov, Konstantin
Kumar, Piyush
An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse
title An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse
title_full An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse
title_fullStr An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse
title_full_unstemmed An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse
title_short An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse
title_sort m theory solution to the strong cp problem and constraints on the axiverse
topic Particle Physics - Theory
url http://cds.cern.ch/record/1262655
http://cds.cern.ch/record/1262655
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