A lanthanide-rich kilonova in the aftermath of a long gamma-ray burst
Abstract
Kilonovae are a rare class of astrophysical transients powered by the radioactive decay of nuclei heavier than iron, synthesized in the merger of two compact objects. Over the first few days, the kilonova evolution is dominated by a large number of radioactive isotopes contributing to the heating rate. On timescales of weeks to months, its behavior is predicted to differ depending on the ejecta composition and merger remnant. However, late-time observations of known kilonovae are either missing or limited. Here we report observations of a luminous red transient with a quasi-thermal spectrum, following an unusual gamma-ray burst of long duration. We classify this thermal emission as a kilonova and track its evolution up to two months after the burst. At these late times, the recession of the photospheric radius and the rapidly-decaying bolometric luminosity () support the recombination of lanthanide-rich ejecta as they cool.
Keywords
Cite
@article{arxiv.2308.00638,
title = {A lanthanide-rich kilonova in the aftermath of a long gamma-ray burst},
author = {Yu-Han Yang and Eleonora Troja and Brendan O'Connor and Chris L. Fryer and Myungshin Im and Joe Durbak and Gregory S. H. Paek and Roberto Ricci and Clécio R. De Bom and James H. Gillanders and Alberto J. Castro-Tirado and Zong-Kai Peng and Simone Dichiara and Geoffrey Ryan and Hendrik van Eerten and Zi-Gao Dai and Seo-Won Chang and Hyeonho Choi and Kishalay De and Youdong Hu and Charles D. Kilpatrick and Alexander Kutyrev and Mankeun Jeong and Chung-Uk Lee and Martin Makler and Felipe Navarete and Ignacio Pérez-García},
journal= {arXiv preprint arXiv:2308.00638},
year = {2023}
}
Comments
47 pages, 14 figures, 9 tables; submitted; a minor typo fixed