The impact of wind mass loss on nucleosynthesis and yields of very massive stars at low metallicity

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Main Authors: Higgins, Erin R., Vink, Jorick S., Hirschi, Raphael, Laird, Alison M., Sabhahit, Gautham
Format: Preprint
Published: 2025
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_version_ 1866911031234658304
author Higgins, Erin R.
Vink, Jorick S.
Hirschi, Raphael
Laird, Alison M.
Sabhahit, Gautham
author_facet Higgins, Erin R.
Vink, Jorick S.
Hirschi, Raphael
Laird, Alison M.
Sabhahit, Gautham
contents The chemical feedback from stellar winds in low metallicity (Z) environments is key for understanding the evolution of globular clusters and the early Universe. With disproportionate mass lost from the most massive stars (M > 100Msun), and an excess of such stars expected at the lowest metallicities, their contribution to the enrichment of the early pristine clusters could be significant. In this work, we examine the effect of mass loss at low metallicity on the nucleosynthesis and wind yields of (very) massive stars. We calculate stellar models with initial masses ranging from 30 to 500Msun during core Hydrogen and Helium burning phases, at four metallicities ranging from 20% Zsun down to 1% Zsun. The ejected masses and net yields are provided for each grid of models. While mass-loss rates decrease with Z, we find that not only are wind yields significant, but the nucleosynthesis is also altered due to the change in central temperatures and therefore also plays a role. We find that 80-300Msun models can produce large quantities of Na-rich and O-poor material, relevant for the observed Na-O anti-correlation in globular clusters.
format Preprint
id arxiv_https___arxiv_org_abs_2504_18621
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The impact of wind mass loss on nucleosynthesis and yields of very massive stars at low metallicity
Higgins, Erin R.
Vink, Jorick S.
Hirschi, Raphael
Laird, Alison M.
Sabhahit, Gautham
Solar and Stellar Astrophysics
Astrophysics of Galaxies
The chemical feedback from stellar winds in low metallicity (Z) environments is key for understanding the evolution of globular clusters and the early Universe. With disproportionate mass lost from the most massive stars (M > 100Msun), and an excess of such stars expected at the lowest metallicities, their contribution to the enrichment of the early pristine clusters could be significant. In this work, we examine the effect of mass loss at low metallicity on the nucleosynthesis and wind yields of (very) massive stars. We calculate stellar models with initial masses ranging from 30 to 500Msun during core Hydrogen and Helium burning phases, at four metallicities ranging from 20% Zsun down to 1% Zsun. The ejected masses and net yields are provided for each grid of models. While mass-loss rates decrease with Z, we find that not only are wind yields significant, but the nucleosynthesis is also altered due to the change in central temperatures and therefore also plays a role. We find that 80-300Msun models can produce large quantities of Na-rich and O-poor material, relevant for the observed Na-O anti-correlation in globular clusters.
title The impact of wind mass loss on nucleosynthesis and yields of very massive stars at low metallicity
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2504.18621