High-resolution Near-infrared Spectroscopic Study of Galactic Supernova Remnants. I. Kinematic Distances
Abstract
We have carried out high-resolution near-infrared spectroscopic observations toward 16 Galactic supernova remnants (SNRs) showing strong H emission features. A dozen bright H emission lines are clearly detected for individual SNRs, and we have measured their central velocities, line widths, and fluxes. For all SNRs except one (G9.90.8), the H line ratios are well consistent with that of thermal excitation at K, indicating that the H emission lines are most likely from shock-excited gas and therefore that they are physically associated with the remnants. The kinematic distances to the 15 SNRs are derived from the central velocities of the H lines using a Galactic rotation model. We derive for the first time the kinematic distances to four SNRs: G13.50.2, G16.00.5, G32.10.9, and G33.20.6. Among the remaining 11 SNRs, the central velocities of the H emission lines for six SNRs are well consistent ( km s) with those obtained in previous radio observations, while for the other five SNRs (G18.10.1, G18.91.1, Kes 69, 3C 396, W49B) they are significantly different. We discuss the velocity discrepancies in these five SNRs. In G9.90.8, the H emission shows nonthermal line ratios and narrow line width ( km s), and we discuss its origin.
Keywords
Cite
@article{arxiv.2011.07711,
title = {High-resolution Near-infrared Spectroscopic Study of Galactic Supernova Remnants. I. Kinematic Distances},
author = {Yong-Hyun Lee and Bon-Chul Koo and Jae-Joon Lee},
journal= {arXiv preprint arXiv:2011.07711},
year = {2020}
}
Comments
50 pages, 15 figures, 2 tables; accepted in AJ on 2020 Oct. 9