English

Radio Constraints on $r$-process Nucleosynthesis by Collapsars

High Energy Astrophysical Phenomena 2022-07-27 v1

Abstract

The heaviest elements in the Universe are synthesized through rapid neutron capture (rr-process) in extremely neutron rich outflows. Neutron star mergers were established as an important rr-process source through the multi-messenger observation of GW170817. Collapsars were also proposed as a potentially major source of heavy elements; however, this is difficult to probe through optical observations due to contamination by other emission mechanisms. Here we present observational constraints on rr-process nucleosynthesis by collapsars based on radio follow-up observations of nearby long gamma-ray bursts. We make the hypothesis that late-time radio emission arises from the collapsar wind ejecta responsible for forging rr-process elements, and consider the constraints that can be set on this scenario using radio observations of a sample of Swift/BAT GRBs located within 2 Gpc. No radio counterpart was identified in excess of the radio afterglow of the GRBs in our sample, limiting the collapsar rr-process contribution to 0.2\lesssim0.2 M_\odot under the models we considered, with constant circum-merger densities giving more stringent constraints. While our results are in tension with collapsars being the majority rr-process production sites, the ejecta mass and velocity profile of collapsar winds is not yet well modeled. As such, our results are currently subject to large uncertainties, but further theoretical work could greatly improve them.

Keywords

Cite

@article{arxiv.2202.09739,
  title  = {Radio Constraints on $r$-process Nucleosynthesis by Collapsars},
  author = {K. H. Lee and I. Bartos and A. Cook and A. Corsi and Z. Marka and G. C. Privon and S. Marka},
  journal= {arXiv preprint arXiv:2202.09739},
  year   = {2022}
}

Comments

6 pages, 1 figure

R2 v1 2026-06-24T09:46:14.472Z