Abelian Higgs model in power-law inflation: the propagators in the unitary gauge

Fuente: arXiv
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Autores principales: Glavan, Dražen, Marunović, Anja, Prokopec, Tomislav, Zahraee, Zahra
Formato: Preprint
Publicado: 2020
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author Glavan, Dražen
Marunović, Anja
Prokopec, Tomislav
Zahraee, Zahra
author_facet Glavan, Dražen
Marunović, Anja
Prokopec, Tomislav
Zahraee, Zahra
contents We consider the Abelian Higgs model in the broken phase as a spectator in cosmological spaces of general $D$ space-time dimensions, and allow for the condensate to be time-dependent. We fix the unitary gauge using Dirac's formalism for constrained systems, and then quantize the gauge-fixed system. Vector and scalar perturbations develop time-dependent masses. We work out their propagators assuming the cosmological background is that of power-law inflation, characterized by a constant principal slow-roll parameter, and that the scalar condensate is in the attractor regime, scaling as the Hubble rate. Our propagators correctly reduce to known results in the Minkowski and de Sitter space limits. We use the vector propagator to compute the equal-time correlators of electric and magnetic fields and find that at super-Hubble separations the former is enhanced, while the latter is suppressed compared to the vacuum fluctuations of the massless vector field. These correlators satisfy the hierarchy governed by Faraday's law.
format Preprint
id arxiv_https___arxiv_org_abs_2005_05435
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Abelian Higgs model in power-law inflation: the propagators in the unitary gauge
Glavan, Dražen
Marunović, Anja
Prokopec, Tomislav
Zahraee, Zahra
General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
High Energy Physics - Theory
We consider the Abelian Higgs model in the broken phase as a spectator in cosmological spaces of general $D$ space-time dimensions, and allow for the condensate to be time-dependent. We fix the unitary gauge using Dirac's formalism for constrained systems, and then quantize the gauge-fixed system. Vector and scalar perturbations develop time-dependent masses. We work out their propagators assuming the cosmological background is that of power-law inflation, characterized by a constant principal slow-roll parameter, and that the scalar condensate is in the attractor regime, scaling as the Hubble rate. Our propagators correctly reduce to known results in the Minkowski and de Sitter space limits. We use the vector propagator to compute the equal-time correlators of electric and magnetic fields and find that at super-Hubble separations the former is enhanced, while the latter is suppressed compared to the vacuum fluctuations of the massless vector field. These correlators satisfy the hierarchy governed by Faraday's law.
title Abelian Higgs model in power-law inflation: the propagators in the unitary gauge
topic General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2005.05435