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March 30, 2026Monthly Notices of the Royal Astronomical Society0 citationsOpen Access

An unexplored enrichment stochasticity and its implications for stellar abundance patterns

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AAAnmol AggarwalRSRalph Schönrich

Key Points

  • This research aims to examine the enrichment processes affecting extremely low metallicity stars and their abundance patterns.
  • Remodeled enrichment of three extreme metal-poor stars.
  • Analyzed chemical abundance ratios concerning supernova outputs.
  • Assessed inhomogeneous distribution of supernova ejecta.
  • Showed abnormal abundance ratios can be explained by normal supernova rather than hypernova.
  • Established inhomogeneity in supernovae significantly impacts stellar abundance interpretation.

Abstract

Abstract Extremely low metallicity stars are intensely studied as they take observations the closest to the very first generations of stars in the universe. Widely assumed to be enriched by just one dying massive star, some of these very metal poor stars have abnormal chemical abundance ratios and have been taken to reflect a rare hypernova (with high explosion energy ≳ 1052 erg.). Here we remodel the enrichment of three such stars and show that their abundances are better explained by enrichment from a normal (less energetic) supernova accounting for inhomogeneous distribution of the ejecta. This work establishes the importance of the inhomogeneity of supernovae, serves as a template for a required reassessment of all metal-poor/peculiar stars, and raises the need to quantify this inhomogeneity both in theory and in observations.

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Cite This Study

Aggarwal et al. (2026) studied this question.

synapsesocial.com/papers/69c9c553f8fdd13afe0bd4d3https://doi.org/10.1093/mnras/stag610
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