English

Chandra X-Ray Study of Galactic Supernova Remnant G299.2-2.9

Astrophysics 2009-06-23 v1

Abstract

We report on observations of the Galactic supernova remnant (SNR) G299.2-2.9 with the {\it Chandra X-Ray Observatory}. The high resolution images with {\it Chandra} resolve the X-ray-bright knots, shell, and diffuse emission extending beyond the bright shell. Interior to the X-ray shell is faint diffuse emission occupying the central regions of the SNR. Spatially-resolved spectroscopy indicates a large foreground absorption (NHN_{\rm H} \sim 3.5 ×\times 1021^{21} cm2^{-2}), which supports a relatively distant location (dd \sim 5 kpc) for the SNR. The blast wave is encountering a highly inhomogeneous ambient medium with the densities ranging over more than an order of magnitude (n0n_0 \sim 0.1 - 4 cm3^{-3}). Assuming the distance of dd \sim 5 kpc, we derive a Sedov age of τ\tau \sim 4500 yr and an explosion energy of E0E_0 \sim 1.6 ×\times 1050^{50} ergs. The ambient density structure and the overall morphology suggest that G299.2-2.9 may be a limb-brightened partial shell extending to \sim7 pc radius surrounded by fainter emission extending beyond that to a radius of \sim9 pc. This suggests the SNR exploded in a region of space where there is a density gradient whose direction lies roughly along the line of sight. The faint central region shows strong line emission from heavy elements of Si and Fe, which is caused by the presence of the overabundant stellar ejecta there. We find no evidence for stellar ejecta enriched in light elements of O and Ne. The observed abundance structure of the metal-rich ejecta supports a Type Ia origin for G299.2-2.9.

Keywords

Cite

@article{arxiv.0706.0524,
  title  = {Chandra X-Ray Study of Galactic Supernova Remnant G299.2-2.9},
  author = {Sangwook Park and Patrick O. Slane and John P. Hughes and Koji Mori and David N. Burrows and Gordon P. Garmire},
  journal= {arXiv preprint arXiv:0706.0524},
  year   = {2009}
}

Comments

16 pages (AASTex emulator style), 3 Tables, 10 Figures (including 1 color: Figure 1), Accepted by ApJ