High resolution X-ray spectra of the compact binary supersoft X-ray source CAL 87
arXiv:2407.17778 · doi:10.1051/0004-6361/202450101
Abstract
In this study, we present an analysis of the archival X-ray data of the eclipsing supersoft X-ray binary CAL 87 observed with the {\it Chandra} Advanced CCD Imaging Spectrometer (ACIS) camera and Low Energy Transmission Grating (LETG) in 2001 August and with {\it XMM-Newton} in 2003 April. The high resolution X-ray spectra are almost unchanged in the two different dates. The average unabsorbed X-ray luminosity during the exposure was 4.645.46 ergs s in 2001 and 4.544.82 ergs s in 2003, with prominent and red-shifted emission lines, mostly of nitrogen, oxygen, iron and argon, contributing to at least 30\% of the X-ray flux. The continuum X-ray flux is at least an order of magnitude too small for a hot, hydrogen burning WD. However, the continuum flux is consistent with Thomson-scattering reflecting about 5\% of the light of a hydrogen burning WD with effective temperature of 800,000 K, and a mass of 1.2 M. It has been noted before that a large Thomson-scattering corona explains the X-ray eclipse of CAL 87, in which the eclipsed region is found to be of size the order of a solar radius. The emission lines originate in an even more extended region, beyond the eclipsed central X-ray source; the emission spectrum is very complex, with unusual line ratios.
10 pages, 6 figures, accepted to A&A
References in corpus (10)
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- An eclipsing binary distance to the Large Magellanic Cloud accurate to 2 per cent
- The Heidelberg compact electron beam ion traps
- X-ray Spectroscopy of the 2006 Outburst of RS Oph
- XMM-Newton high-resolution spectroscopy reveals the chemical evolution of M 87
- CHEERS: The chemical evolution RGS sample
- A UV and optical study of 18 old novae with Gaia DR2 distances: mass accretion rates, physical parameters, and MMRD
- Astrophysical line diagnosis requires non-linear dynamical atomic modeling
- CAL 87 - an evolved wind-driven supersoft X-ray binary
- The X-ray eclipse geometry of CAL 87