More is Different: Multi-Axion Dynamics Changes Topological Defect Evolution

Fuente: arXiv
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Auteurs principaux: Lee, Junseok, Murai, Kai, Takahashi, Fuminobu, Yin, Wen
Format: Preprint
Publié: 2024
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author Lee, Junseok
Murai, Kai
Takahashi, Fuminobu
Yin, Wen
author_facet Lee, Junseok
Murai, Kai
Takahashi, Fuminobu
Yin, Wen
contents We study topological defects in multi-axion models arising from multiple Peccei-Quinn (PQ) scalars. Using a simplified two-axion system, we reveal fundamental differences in the evolution of these defects compared to single-axion scenarios. This finding is particularly significant because, despite the fact that integrating out heavier axions reduces these models to an effective single PQ scalar theory at low energies, the actual physical behavior of topological defects differs markedly from single-axion predictions. Unlike single-axion models where conventional cosmic strings form, multi-axion scenarios with post-inflationary or mixed initial conditions generically produce networks of strings interconnected by high-tension domain walls. This results in a severe cosmological domain wall problem. We determine string-wall network instability conditions and discuss cosmological implications including the application to the QCD axion and gravitational wave generation. Our findings highlight that multi-axion dynamics can lead to qualitatively different outcomes for topological defects, challenging the conventional picture of cosmic evolution of topological defects based on single-axion models.
format Preprint
id arxiv_https___arxiv_org_abs_2409_09749
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle More is Different: Multi-Axion Dynamics Changes Topological Defect Evolution
Lee, Junseok
Murai, Kai
Takahashi, Fuminobu
Yin, Wen
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
We study topological defects in multi-axion models arising from multiple Peccei-Quinn (PQ) scalars. Using a simplified two-axion system, we reveal fundamental differences in the evolution of these defects compared to single-axion scenarios. This finding is particularly significant because, despite the fact that integrating out heavier axions reduces these models to an effective single PQ scalar theory at low energies, the actual physical behavior of topological defects differs markedly from single-axion predictions. Unlike single-axion models where conventional cosmic strings form, multi-axion scenarios with post-inflationary or mixed initial conditions generically produce networks of strings interconnected by high-tension domain walls. This results in a severe cosmological domain wall problem. We determine string-wall network instability conditions and discuss cosmological implications including the application to the QCD axion and gravitational wave generation. Our findings highlight that multi-axion dynamics can lead to qualitatively different outcomes for topological defects, challenging the conventional picture of cosmic evolution of topological defects based on single-axion models.
title More is Different: Multi-Axion Dynamics Changes Topological Defect Evolution
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2409.09749