Gauge invariant quantum backreaction in U(1) axion inflation

Fuente: arXiv
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Main Authors: Galanti, Davide Campanella, Conzinu, Pietro, Marozzi, Giovanni, da Costa, Simony Santos
Format: Preprint
Published: 2024
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_version_ 1866910659267002368
author Galanti, Davide Campanella
Conzinu, Pietro
Marozzi, Giovanni
da Costa, Simony Santos
author_facet Galanti, Davide Campanella
Conzinu, Pietro
Marozzi, Giovanni
da Costa, Simony Santos
contents We evaluate the quantum backreaction due to a gauge field coupled to a pseudo-scalar field driving a slow-roll inflationary stage, the so-called axion inflation. The backreaction is evaluated for the first time using a gauge invariant approach, going to second order in perturbation theory, and taking into consideration inflaton fluctuations as well as scalar perturbations of the metric. Within our gauge-invariant, but observer-dependent approach, we naturally consider as physical observers the ones comoving with the inflaton field. Considering the effective expansion rate consequent to the gauge field's backreaction, we observe that the backreaction effect becomes significant quite rapidly, moving the system out of the perturbative regime and into what is often referred to as the strong backreaction regime. This behavior also applies to the parameter that dictates the production of the gauge fields. The space-time backreaction is mainly due to the helicity contribution within the region of validity of the perturbative regime. As a final result, we see that the evaluated backreaction goes in the direction of prolonging the inflationary period more compared to the scenarios previously studied.
format Preprint
id arxiv_https___arxiv_org_abs_2406_19960
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Gauge invariant quantum backreaction in U(1) axion inflation
Galanti, Davide Campanella
Conzinu, Pietro
Marozzi, Giovanni
da Costa, Simony Santos
General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Theory
We evaluate the quantum backreaction due to a gauge field coupled to a pseudo-scalar field driving a slow-roll inflationary stage, the so-called axion inflation. The backreaction is evaluated for the first time using a gauge invariant approach, going to second order in perturbation theory, and taking into consideration inflaton fluctuations as well as scalar perturbations of the metric. Within our gauge-invariant, but observer-dependent approach, we naturally consider as physical observers the ones comoving with the inflaton field. Considering the effective expansion rate consequent to the gauge field's backreaction, we observe that the backreaction effect becomes significant quite rapidly, moving the system out of the perturbative regime and into what is often referred to as the strong backreaction regime. This behavior also applies to the parameter that dictates the production of the gauge fields. The space-time backreaction is mainly due to the helicity contribution within the region of validity of the perturbative regime. As a final result, we see that the evaluated backreaction goes in the direction of prolonging the inflationary period more compared to the scenarios previously studied.
title Gauge invariant quantum backreaction in U(1) axion inflation
topic General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Theory
url https://arxiv.org/abs/2406.19960