English

Proton-rich production of lanthanides: the $\nu i$ process

High Energy Astrophysical Phenomena 2026-01-29 v3 Solar and Stellar Astrophysics Nuclear Theory

Abstract

The astrophysical origin of the lanthanides is an open question in nuclear astrophysics. Besides the widely studied ss, ii, and rr processes in moderately-to-strongly neutron-rich environments, an intriguing alternative site for lanthanide production could in fact be robustly proton-rich\textit{proton-rich} matter outflows from core-collapse supernovae under specific conditions -- in particular, high-entropy winds with enhanced neutrino luminosity and fast dynamical timescales. In this environment, excess protons present after charged particle reactions have ceased can continue to be converted to neutrons by (anti-)neutrino interactions, producing a neutron capture reaction flow up to A~200. This scenario, christened the νi\nu i process in a recent paper, has previously been discussed as a possibility. Here, we examine the prospects for νi\nu i process through the lens of stellar abundance patterns, bolometric lightcurves, and galactic chemical evolution models, with a particular focus on hypernovae as candidate sites. We identify specific lanthanide signatures for which the νi\nu i process can provide a credible alternative to rr/ii processes.

Keywords

Cite

@article{arxiv.2510.11467,
  title  = {Proton-rich production of lanthanides: the $\nu i$ process},
  author = {Xilu Wang and Amol V. Patwardhan and Yangming Lin and Junbo Zheng and Michael J. Cervia and Yanwen Deng and A. Baha Balantekin and Haining Li and Ian U. Roederer and Rebecca Surman},
  journal= {arXiv preprint arXiv:2510.11467},
  year   = {2026}
}

Comments

15 pages, 5 figures, v3 matches version to appear in ApJL