Impact of rotation on the accretion of entropy perturbations in collapsing massive stars

Fuente: arXiv
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Main Author: Mukazhanov, Olzhas
Format: Preprint
Published: 2025
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author Mukazhanov, Olzhas
author_facet Mukazhanov, Olzhas
contents Convection in the innermost shells of massive stars plays an important role in initiating core-collapse supernovae. When these convective motions reach the supernova shock, they create extra turbulence, which helps energize the explosion. In our earlier work, we studied the effect of rotation on the hydrodynamic evolution of convective vortices in collapsing stars. This study focuses on how rotation influences the entropy perturbations, which naturally form in turbulent convection. As these perturbations are carried inward with the collapsing star, they generate both vorticity and sound waves. Using linear perturbation theory, we model entropy waves as small disturbances on top of a steady background flow. Our results show that stellar rotation has little effect on the evolution of entropy perturbations during collapse, prior to encountering the supernova shock. This outcome is consistent with our earlier findings on the limited influence of rotation in the accretion of convective eddies.
format Preprint
id arxiv_https___arxiv_org_abs_2509_09419
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Impact of rotation on the accretion of entropy perturbations in collapsing massive stars
Mukazhanov, Olzhas
Solar and Stellar Astrophysics
High Energy Astrophysical Phenomena
Convection in the innermost shells of massive stars plays an important role in initiating core-collapse supernovae. When these convective motions reach the supernova shock, they create extra turbulence, which helps energize the explosion. In our earlier work, we studied the effect of rotation on the hydrodynamic evolution of convective vortices in collapsing stars. This study focuses on how rotation influences the entropy perturbations, which naturally form in turbulent convection. As these perturbations are carried inward with the collapsing star, they generate both vorticity and sound waves. Using linear perturbation theory, we model entropy waves as small disturbances on top of a steady background flow. Our results show that stellar rotation has little effect on the evolution of entropy perturbations during collapse, prior to encountering the supernova shock. This outcome is consistent with our earlier findings on the limited influence of rotation in the accretion of convective eddies.
title Impact of rotation on the accretion of entropy perturbations in collapsing massive stars
topic Solar and Stellar Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2509.09419