English

A Repeating Fast Radio Burst Source in a Low-Luminosity Dwarf Galaxy

High Energy Astrophysical Phenomena 2024-10-23 v1 Astrophysics of Galaxies

Abstract

We present the localization and host galaxy of FRB 20190208A, a repeating source of fast radio bursts (FRBs) discovered using CHIME/FRB. As part of the PRECISE repeater localization program on the EVN, we monitored FRB 20190208A for 65.6 hours at 1.4\sim1.4 GHz and detected a single burst, which led to its VLBI localization with 260 mas uncertainty (2σ\sigma). Follow-up optical observations with the MMT Observatory (i25.7i\gtrsim 25.7 mag (AB)) found no visible host at the FRB position. Subsequent deeper observations with the GTC, however, revealed an extremely faint galaxy (r=27.32±0.16r=27.32 \pm0.16 mag), very likely (99.95%99.95 \%) associated with FRB 20190208A. Given the dispersion measure of the FRB (580\sim580 pc cm3^{-3}), even the most conservative redshift estimate (zmax0.83z_{\mathrm{max}}\sim0.83) implies that this is the lowest-luminosity FRB host to date (108L\lesssim10^8L_{\odot}), even less luminous than the dwarf host of FRB 20121102A. We investigate how localization precision and the depth of optical imaging affect host association, and discuss the implications of such a low-luminosity dwarf galaxy. Unlike the other repeaters with low-luminosity hosts, FRB 20190208A has a modest Faraday rotation measure of a few tens of rad m2^{-2}, and EVN plus VLA observations reveal no associated compact persistent radio source. We also monitored FRB 20190208A for 40.4 hours over 2 years as part of the \'ECLAT repeating FRB monitoring campaign on the Nan\c{c}ay Radio Telescope, and detected one burst. Our results demonstrate that, in some cases, the robust association of an FRB with a host galaxy will require both high localization precision, as well as deep optical follow-up.

Keywords

Cite

@article{arxiv.2410.17044,
  title  = {A Repeating Fast Radio Burst Source in a Low-Luminosity Dwarf Galaxy},
  author = {Danté M. Hewitt and Mohit Bhardwaj and Alexa C. Gordon and Aida Kirichenko and Kenzie Nimmo and Shivani Bhandari and Ismaël Cognard and Wen-fai Fong and Armando Gil de Paz and Akshatha Gopinath and Jason W. T. Hessels and Franz Kirsten and Benito Marcote and Vladislavs Bezrukovs and Richard Blaauw and Justin D. Bray and Salvatore Buttaccio and Tomas Cassanelli and Pragya Chawla and Alessandro Corongiu and William Deng and Hannah N. Didehbani and Yuxin Dong and Marcin P. Gawroński and Marcello Giroletti and Lucas Guillemot and Jeff Huang and Ronniy C. Joseph and Victoria M. Kaspi and Mattias Lazda and Michael Lindqvist and Maccaferri Giuseppe and Lluis Mas-Ribas and Kiyoshi W. Masui and Ryan Mckinven and Daniele Michilli and Anya E. Nugent and Omar S. Ould-Boukattine and Zsolt Paragi and Aaron B. Pearlman and Ue-Li Pen and Ziggy Pleunis and Ketan R. Sand and Vishwangi Shah and Kaitlyn Shin and Mark P. Snelders and Tiziana Venturi and Na Wang and David R. A. Williams-Baldwin and Jun Yang and Jianping P. Yuan},
  journal= {arXiv preprint arXiv:2410.17044},
  year   = {2024}
}

Comments

submitted to ApJL

R2 v1 2026-06-28T19:31:33.574Z