English

Carbon star formation as seen through the non-monotonic initial-final mass relation

Solar and Stellar Astrophysics 2020-07-09 v1

Abstract

The initial-final mass relation (IFMR) links the birth mass of a star to the mass of the compact remnant left at its death. While the relevance of the IFMR across astrophysics is universally acknowledged, not all of its fine details have yet been resolved. A new analysis of a few carbon-oxygen white dwarfs in old open clusters of the Milky Way led us to identify a kink in the IFMR, located over a range of initial masses, 1.65Mi/M2.101.65 \lesssim M_{\rm i}/M_{\odot} \lesssim 2.10. The kink's peak in WD mass of 0.700.75M\approx 0.70-0.75 \, M_{\odot} is produced by stars with Mi1.81.9MM_{\rm i} \simeq 1.8 - 1.9 \, M_{\odot}, corresponding to ages of about 1.81.71.8 - 1.7 Gyr. Interestingly, this peak coincides with the initial mass limit between low-mass stars that develop a degenerate helium core after central hydrogen exhaustion, and intermediate-mass stars that avoid electron degeneracy. We interpret the IFMR kink as the signature of carbon star formation in the Milky Way. This finding is critical to constraining the evolution and chemical enrichment of low-mass stars, and their impact on the spectrophotometric properties of galaxies.

Cite

@article{arxiv.2007.04163,
  title  = {Carbon star formation as seen through the non-monotonic initial-final mass relation},
  author = {Paola Marigo and Jeffrey D. Cummings and Jason Lee Curtis and Jason Kalirai and Yang Chen and Pier-Emmanuel Tremblay and Enrico Ramirez-Ruiz and Pierre Bergeron and Sara Bladh and Alessandro Bressan and Leo Girardi and Giada Pastorelli and Michele Trabucchi and Sihao Cheng and Bernhard Aringer and Piero Dal Tio},
  journal= {arXiv preprint arXiv:2007.04163},
  year   = {2020}
}

Comments

Authors' version of the main article (43 pages) and Supplementary Information (12 pages) combined into a single pdf (55 pages). The Nature Astronomy published article is available at this url: https://www.nature.com/articles/s41550-020-1132-1

R2 v1 2026-06-23T16:57:13.444Z