Hayward Boson Stars

Fuente: arXiv
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Auteurs principaux: Chicaiza-Medina, Sebastian S., Degollado, Juan Carlos
Format: Preprint
Publié: 2025
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author Chicaiza-Medina, Sebastian S.
Degollado, Juan Carlos
author_facet Chicaiza-Medina, Sebastian S.
Degollado, Juan Carlos
contents We examined the Einstein-Klein-Gordon system coupled to a nonlinear electrodynamics framework that asymptotically supports a Hayward spacetime. We explored the solution space of a static spherically symmetric, complex scalar field minimally coupled to the gravitational field known as Hayward Boson stars originally studied by Yue and Wang. We construct families of Hayward boson stars in the ground state, for different values of the charge parameter $Q$, and different values of the central scalar field. One of the main results of our analysis is the fact that the existence of boson stars is guaranteed once the condition $\frac{\sqrtβ}{Q}> 1.49661$, where $β$ is a parameter of the electrodynamic theory, is fulfilled. When this condition is not satisfied the electrovacum spacetime contains at least one horizon and the spacetime can not support a scalar field configuration.
format Preprint
id arxiv_https___arxiv_org_abs_2508_11906
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hayward Boson Stars
Chicaiza-Medina, Sebastian S.
Degollado, Juan Carlos
General Relativity and Quantum Cosmology
We examined the Einstein-Klein-Gordon system coupled to a nonlinear electrodynamics framework that asymptotically supports a Hayward spacetime. We explored the solution space of a static spherically symmetric, complex scalar field minimally coupled to the gravitational field known as Hayward Boson stars originally studied by Yue and Wang. We construct families of Hayward boson stars in the ground state, for different values of the charge parameter $Q$, and different values of the central scalar field. One of the main results of our analysis is the fact that the existence of boson stars is guaranteed once the condition $\frac{\sqrtβ}{Q}> 1.49661$, where $β$ is a parameter of the electrodynamic theory, is fulfilled. When this condition is not satisfied the electrovacum spacetime contains at least one horizon and the spacetime can not support a scalar field configuration.
title Hayward Boson Stars
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2508.11906