Diffuse Neutrino Background from Magnetorotational Stellar Core Collapses
Abstract
A statistically significant detection of the diffuse supernova neutrino background (DSNB) is around the corner. To this purpose, we assess the contribution to the DSNB of magnetorotational collapses of massive stars, relying on a suite of state-of-the-art three-dimensional neutrino-magnetohydrodynamic simulations. We find that neutrinos from magnetorotational core collapses boost the high-energy tail of the DSNB spectrum, similar to what is expected from neutrino-driven black hole-forming collapses. The latest data from the Super-Kamiokande Collaboration can already exclude that more than of all collapsing massive stars undergo magnetorotational collapses under optimistic assumptions. A DSNB detection at could take place up to yr earlier at Super-Kamiokande-Gadolinium or JUNO if the fraction of magnetorotational collapses should be larger than . Fascinatingly, if the fraction of magnetorotational stellar collapses should be larger than (), Hyper-Kamiokande could measure such a fraction at after ( yr) yr of DSNB data taking. The combination of DSNB and electromagnetic data has the potential to resolve the degenerate contributions from magnetorotational and neutrino-driven black hole-forming collapses, providing crucial insight on the properties of the population of collapsing massive stars.
Cite
@article{arxiv.2409.09126,
title = {Diffuse Neutrino Background from Magnetorotational Stellar Core Collapses},
author = {Pablo Martínez-Miravé and Irene Tamborra and Miguel Ángel Aloy and Martin Obergaulinger},
journal= {arXiv preprint arXiv:2409.09126},
year = {2024}
}
Comments
15 pages, 8 figures, 2 tables. Accepted for publication in Phys.Rev.D