Cosmic Inflation From Fluctuating Baby-Skyrme Brane

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Hauptverfasser: Fadhilla, Emir Syahreza, Gunara, Bobby Eka, Suroso, Agus, Atmaja, Ardian Nata
Format: Preprint
Veröffentlicht: 2024
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author Fadhilla, Emir Syahreza
Gunara, Bobby Eka
Suroso, Agus
Atmaja, Ardian Nata
author_facet Fadhilla, Emir Syahreza
Gunara, Bobby Eka
Suroso, Agus
Atmaja, Ardian Nata
contents In this work, we explore the inflationary dynamics induced by small fluctuations on the Skyrme brane, characterized by a time-dependent perturbative function $\tildeϕ$. In the low-energy regime, the model successfully reproduces standard inflation, with a potential term dictated by the Skyrmion at the brane. Gravity localization is achieved at the brane, and the lowest energy scale is established at the asymptotic boundary. The model demonstrates the capability to emulate standard inflation dynamics, resembling $\tildeϕ^4$ potential characteristics under certain conditions. At higher energy levels, the behaviour of $\tildeϕ$ is contingent upon the Skyrme term coupling constant $λ$, influencing reheating phases. The wave-like nature of fluctuations allows for energy transfer, resulting in a possibly lower reheating temperature. We also discuss the prospect of $λ$ changing sign during inflation, presenting a non-standard coupling dependent on the matter field.
format Preprint
id arxiv_https___arxiv_org_abs_2403_18446
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Cosmic Inflation From Fluctuating Baby-Skyrme Brane
Fadhilla, Emir Syahreza
Gunara, Bobby Eka
Suroso, Agus
Atmaja, Ardian Nata
General Relativity and Quantum Cosmology
High Energy Physics - Theory
In this work, we explore the inflationary dynamics induced by small fluctuations on the Skyrme brane, characterized by a time-dependent perturbative function $\tildeϕ$. In the low-energy regime, the model successfully reproduces standard inflation, with a potential term dictated by the Skyrmion at the brane. Gravity localization is achieved at the brane, and the lowest energy scale is established at the asymptotic boundary. The model demonstrates the capability to emulate standard inflation dynamics, resembling $\tildeϕ^4$ potential characteristics under certain conditions. At higher energy levels, the behaviour of $\tildeϕ$ is contingent upon the Skyrme term coupling constant $λ$, influencing reheating phases. The wave-like nature of fluctuations allows for energy transfer, resulting in a possibly lower reheating temperature. We also discuss the prospect of $λ$ changing sign during inflation, presenting a non-standard coupling dependent on the matter field.
title Cosmic Inflation From Fluctuating Baby-Skyrme Brane
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2403.18446