English

On Stellar Evolution In A Neutrino Hertzsprung-Russell Diagram

Solar and Stellar Astrophysics 2024-07-04 v1 High Energy Astrophysical Phenomena

Abstract

We explore the evolution of a select grid of solar metallicity stellar models from their pre-main sequence phase to near their final fates in a neutrino Hertzsprung-Russell diagram, where the neutrino luminosity replaces the traditional photon luminosity. Using a calibrated \MESA\ solar model for the solar neutrino luminosity (Lν,L_{\nu,\odot} = 0.02398 \cdot Lγ,L_{\gamma,\odot} = 9.1795 ×\times 1031^{31} erg s1^{-1}) as a normalization, we identify \simeq 0.3 MeV electron neutrino emission from helium burning during the helium flash (peak Lν/Lν,L_{\nu} / L_{\nu,\odot} \simeq 104^4, flux Φν,He flash\Phi_{\nu, {\rm He \ flash}} \simeq 170 (10 pc/dd)2^{2} cm2^{-2} s1^{-1} for a star located at a distance of dd parsec, timescale \simeq 3 days) and the thermal pulse (peak Lν/Lν,L_{\nu} / L_{\nu,\odot} \simeq 109^9, flux Φν,TP\Phi_{\nu, {\rm TP}} \simeq 1.7×\times107^7 (10 pc/dd)2^{2} cm2^{-2} s1^{-1}, timescale \simeq 0.1 yr) phases of evolution in low mass stars as potential probes for stellar neutrino astronomy. We also delineate the contribution of neutrinos from nuclear reactions and thermal processes to the total neutrino loss along the stellar tracks in a neutrino Hertzsprung-Russell diagram. We find, broadly but with exceptions, that neutrinos from nuclear reactions dominate whenever hydrogen and helium burn, and that neutrinos from thermal processes dominate otherwise.

Keywords

Cite

@article{arxiv.2003.05844,
  title  = {On Stellar Evolution In A Neutrino Hertzsprung-Russell Diagram},
  author = {Ebraheem Farag and F. X. Timmes and Morgan Taylor and Kelly M. Patton and R. Farmer},
  journal= {arXiv preprint arXiv:2003.05844},
  year   = {2024}
}

Comments

11 pages, 5 figures, accepted for publication in the astrophysical journal