English

RGS Observations of Ejecta Knots in Tycho's Supernova Remnant

High Energy Astrophysical Phenomena 2020-08-12 v1

Abstract

We present results from {\it XMM-Newton/RGS} observations of prominent knots in the southest portion of Tycho's supernova remnant, known to be the remnant of a Type Ia SN in 1572 C.E. By dispersing the photons from these knots out of the remnant with very little emission in front of or behind them, we obtained the nearly uncontaminated spectra of the knots. In the southernmost knot, the RGS successfully resolved numerous emission lines from Si, Ne, O Heα\alpha and Lyα\alpha, and Fe L-shell. This is the first clear detection of O lines in Tycho's SNR. Line broadening was measured to be 3\sim 3 eV for the O Heα\alpha and 4.5\sim 4.5 eV for Fe L lines. If we attribute the broadening to pure thermal Doppler effects, then we obtain kTO_{O} and kTFe_{Fe} to be 400\sim 400 keV and 1.5 MeV, respectively. These temperatures can be explained by heating in a reverse shock with a shock velocity of 3500\sim 3500 km s1^{-1}. The abundances obtained from fitting the RGS and MOS data together imply substantially elevated amounts of these materials, confirming previous studies that the knots are heated by a reverse shock, and thus contain ejecta material from the supernova. We are unable to find a Type Ia explosion model that reproduces these abundances, but this is likely the result of this knot being too small to extrapolate to the entire remnant.

Keywords

Cite

@article{arxiv.2007.11633,
  title  = {RGS Observations of Ejecta Knots in Tycho's Supernova Remnant},
  author = {Brian J. Williams and Satoru Katsuda and Renata Cumbee and Robert Petre and John C. Raymond and Hiroyuki Uchida},
  journal= {arXiv preprint arXiv:2007.11633},
  year   = {2020}
}

Comments

Accepted by ApJ Letters