English

Supernova remnant W49B and its environment

Solar and Stellar Astrophysics 2015-06-22 v2 High Energy Astrophysical Phenomena

Abstract

We study Gamma-ray supernova remnant W49B and its environment using recent radio and infrared data. {\it Spitzer} IRS low resolution data of W49B shows shocked excitation lines of H2_{2} (0,0) S(0)-S(7) from the SNR-molecular cloud interaction. The H2_2 gas is composed of two components with temperature of \sim260 K and \sim1060 K respectively. Various spectral lines from atomic and ionic particles are detected towards W49B. We suggest the ionic phase has an electron density of \sim500 cm3{}^{-3} and a temperature of \sim104{10^4} K by the spectral line diagnoses. The mid- and far-infrared data from {\it MSX}, {\it Spitzer} and {\it Herschel} reveals a 151 ±\pm 20 K hot dust component with a mass of 7.5 ±\pm 6.6 ×\times 104\Msol{10}^{-4} {\Msol} and a 45 ±\pm 4 K warm dust component with a mass of 6.4 ±\pm 3.2 \Msol{\Msol}. The hot dust is likely from materials swept up by the shock of W49B. The warm dust may possibly originate from the evaporation of clouds interacting with W49B. We build the HI absorption spectra of W49B and nearby four {\HII} regions (W49A, G42.90+0.58, G42.43-0.26 and G43.19-0.53), and study the relation between W49B and the surrounding molecular clouds by employing the 2.12 μ\mum infrared and CO data. We therefore obtain a kinematic distance of \sim10 kpc for W49B and suggest that the remnant is likely associated with the CO cloud at about 40 km s1^{-1}.

Keywords

Cite

@article{arxiv.1407.8260,
  title  = {Supernova remnant W49B and its environment},
  author = {H. Zhu and W. W. Tian and P. Zuo},
  journal= {arXiv preprint arXiv:1407.8260},
  year   = {2015}
}

Comments

11 pages, 13 figures, accepted for publication in ApJ

R2 v1 2026-06-22T05:17:14.239Z