English

High-resolution Near-infrared Spectroscopic Study of Galactic Supernova Remnants. I. Kinematic Distances

Astrophysics of Galaxies 2020-11-25 v1

Abstract

We have carried out high-resolution near-infrared spectroscopic observations toward 16 Galactic supernova remnants (SNRs) showing strong H2_{2} emission features. A dozen bright H2_{2} emission lines are clearly detected for individual SNRs, and we have measured their central velocities, line widths, and fluxes. For all SNRs except one (G9.9-0.8), the H2_{2} line ratios are well consistent with that of thermal excitation at T2000T\sim2000 K, indicating that the H2_{2} 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 H2_{2} lines using a Galactic rotation model. We derive for the first time the kinematic distances to four SNRs: G13.5++0.2, G16.0-0.5, G32.1-0.9, and G33.2-0.6. Among the remaining 11 SNRs, the central velocities of the H2_{2} emission lines for six SNRs are well consistent (±5\pm5 km s1^{-1}) with those obtained in previous radio observations, while for the other five SNRs (G18.1-0.1, G18.9-1.1, Kes 69, 3C 396, W49B) they are significantly different. We discuss the velocity discrepancies in these five SNRs. In G9.9-0.8, the H2_{2} emission shows nonthermal line ratios and narrow line width (4\sim 4 km s1^{-1}), 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