A Heavily Scattered Fast Radio Burst Is Viewed Through Multiple Galaxy Halos
Abstract
We present a multi-wavelength study of the apparently non-repeating, heavily scattered fast radio burst, FRB 20221219A, detected by the Deep Synoptic Array 110 (DSA-110). The burst exhibits a moderate dispersion measure (DM) of and an unusually high scattering timescale of ms at 1.4 GHz. We associate the FRB with a Milky Way-like host galaxy at of stellar mass . We identify two intervening galaxy halos at redshifts and , with low impact parameters, kpc and kpc, and intermediate stellar masses, and . The presence of two such galaxies suggests that the sightline is significantly overcrowded compared to the median sightline to this redshift, as inferred from the halo mass function. We perform a detailed analysis of the sightline toward FRB 20221219A, constructing both DM and scattering budgets. Our results suggest that, unlike most well-localized sources, the host galaxy does not dominate the observed scattering. Instead, we posit that an intersection with a single partially ionized cloudlet in the circumgalactic medium of an intervening galaxy could account for the substantial scattering in FRB 20221219A and remain in agreement with typical electron densities inferred for extra-planar dense cloud-like structures in the Galactic and extragalactic halos (e.g., high-velocity clouds).
Keywords
Cite
@article{arxiv.2405.14182,
title = {A Heavily Scattered Fast Radio Burst Is Viewed Through Multiple Galaxy Halos},
author = {Jakob T. Faber and Vikram Ravi and Stella Koch Ocker and Myles B. Sherman and Kritti Sharma and Liam Connor and Casey Law and Nikita Kosogorov and Gregg Hallinan and Charlie Harnach and Greg Hellbourg and Rick Hobbs and David Hodge and Mark Hodges and James W. Lamb and Paul Rasmussen and Jean J. Somalwar and Sander Weinreb and David P. Woody},
journal= {arXiv preprint arXiv:2405.14182},
year = {2024}
}
Comments
18 pages, 6 figures, submitted to ApJ, comments appreciated