Neutrino-driven massive stellar explosions in 3D fostered by magnetic fields via turbulent α-effect

Author:

Matsumoto Jin1ORCID,Takiwaki Tomoya2ORCID,Kotake Kei3

Affiliation:

1. Keio Institute of Pure and Applied Sciences, Keio University , Yokohama 223-8522 , Japan

2. National Astronomical Observatory of Japan , Tokyo 181-8588 , Japan

3. Department of Applied Physics and Research Institute of Stellar Explosive Phenomena, Fukuoka University , Fukuoka 814-0180 , Japan

Abstract

ABSTRACT We investigate the influence of magnetic field amplification on the core-collapse supernovae in highly magnetized progenitors through 3D simulations. By considering rotating models, we observe a strong correlation between the exponential growth of the magnetic field in the gain region and the initiation of shock revival, with a faster onset compared to the non-rotating model. We highlight that the mean magnetic field experiences exponential amplification as a result of α-effect in the dynamo process, which works efficiently with the increasing kinetic helicity of the turbulence within the gain region. Our findings indicate that the significant amplification of the mean magnetic fields leads to the development of locally intense turbulent magnetic fields, particularly in the vicinity of the poles, thereby promoting the revival of the shock by neutrino heating.

Funder

Keio University

Fukuoka University

JSPS

MEXT

Joint Institute for Computational Fundamental Science

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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