Spectacular nucleosynthesis from early massive stars
Abstract
Stars formed with initial mass over 50 Msun are very rare today, but they are thought to be more common in the early universe. The fates of those early, metal-poor, massive stars are highly uncertain. Most are expected to directly collapse to black holes, while some may explode as a result of rotationally powered engines or the pair-creation instability. We present the chemical abundances of J0931+0038, a nearby low-mass star identified in early followup of SDSS-V Milky Way Mapper, which preserves the signature of unusual nucleosynthesis from a massive star in the early universe. J0931+0038 has relatively high metallicity ([Fe/H] = -1.76 +/- 0.13) but an extreme odd-even abundance pattern, with some of the lowest known abundance ratios of [N/Fe], [Na/Fe], [K/Fe], [Sc/Fe], and [Ba/Fe]. The implication is that a majority of its metals originated in a single extremely metal-poor nucleosynthetic source. An extensive search through nucleosynthesis predictions finds a clear preference for progenitors with initial mass > 50 Msun, making J0931+0038 one of the first observational constraints on nucleosynthesis in this mass range. However the full abundance pattern is not matched by any models in the literature. J0931+0038 thus presents a challenge for the next generation of nucleosynthesis models and motivates study of high-mass progenitor stars impacted by convection, rotation, jets, and/or binary companions. Though rare, more examples of unusual early nucleosynthesis in metal-poor stars should be found in upcoming large spectroscopic surveys.
Cite
@article{arxiv.2401.02484,
title = {Spectacular nucleosynthesis from early massive stars},
author = {Alexander P. Ji and Sanjana Curtis and Nicholas Storm and Vedant Chandra and Kevin C. Schlaufman and Keivan G. Stassun and Alexander Heger and Marco Pignatari and Adrian M. Price-Whelan and Maria Bergemann and Guy S. Stringfellow and Carla Frohlich and Henrique Reggiani and Erika M. Holmbeck and Jamie Tayar and Shivani P. Shah and Emily J. Griffith and Chervin F. P. Laporte and Andrew R. Casey and Keith Hawkins and Danny Horta and William Cerny and Pierre Thibodeaux and Sam A. Usman and Joao A. S. Amarante and Rachael L. Beaton and Phillip A. Cargile and Cristina Chiappini and Charlie Conroy and Jennifer A. Johnson and Juna A. Kollmeier and Haining Li and Sarah Loebman and Georges Meynet and Dmitry Bizyaev and Joel R. Brownstein and Pramod Gupta and Sean Morrison and Kaike Pan and Solange V. Ramirez and Hans-Walter Rix and Jose Sanchez-Gallego},
journal= {arXiv preprint arXiv:2401.02484},
year = {2024}
}
Comments
11 pages + 22 page appendix, accepted to ApJL