Anomalous Hydrogen Recombination-Line Ratios in Ultraluminous Infrared Galaxies
Abstract
We conducted systematic observations of the H I Br (4.05 m) and Br (2.63 m) lines in 52 nearby () ultraluminous infrared galaxies (ULIRGs) with AKARI. Among 33 ULIRGs wherein the lines are detected, three galaxies show anomalous Br/Br line ratios (), which are significantly higher than those for case B (0.565). Our observations also show that ULIRGs have a tendency to exhibit higher Br/Br line ratios than those observed in Galactic H II regions. The high Br/Br line ratios cannot be explained by a combination of dust extinction and case B since dust extinction reduces the ratio. We explore possible causes for the high Br/Br line ratios and show that the observed ratios can be explained by a combination of an optically thick Br line and an optically thin Br line. We simulated the H II regions in ULIRGs with the Cloudy code, and our results show that the high Br/Br line ratios can be explained by high-density conditions, wherein the Br line becomes optically thick. To achieve a column density large enough to make the Br line optically thick within a single H II region, the gas density must be as high as . We therefore propose an ensemble of H II regions, in each of which the Br line is optically thick, to explain the high Br/Br line ratio.
Keywords
Cite
@article{arxiv.2109.06880,
title = {Anomalous Hydrogen Recombination-Line Ratios in Ultraluminous Infrared Galaxies},
author = {Kenichi Yano and Shunsuke Baba and Takao Nakagawa and Matthew Malkan and Naoki Isobe and Mai Shirahata and Ryosuke Doi and Vanshree Bhalotia},
journal= {arXiv preprint arXiv:2109.06880},
year = {2021}
}
Comments
28 pages, 15 figures, accepted for publication in ApJ