On the area of accretion curtains from fast aperiodic time variability of the intermediate polar EX Hya
arXiv:1405.0855 · doi:10.1093/mnras/stu897
Abstract
We present results of a study of the fast timing variability of the magnetic cataclysmic variable (mCV) EX Hya. It was previously shown that one may expect the rapid flux variability of mCVs to be smeared out at timescales shorter than the cooling time of hot plasma in the post shock region of the accretion curtain near the WD surface. Estimates of the cooling time and the mass accretion rate, thus provide us with a tool to measure the density of the post-shock plasma and the cross-sectional area of the accretion funnel at the WD surface. We have probed the high frequencies in the aperiodic noise of one of the brightest mCV EX Hya with the help of optical telescopes, namely SALT and the SAAO 1.9m telescope. We place upper limits on the plasma cooling timescale 0.3 sec, on the fractional area of the accretion curtain footprint , and a lower limit on the specific mass accretion rate 3 g/sec/cm. We show that measurements of accretion column footprints via eclipse mapping highly overestimate their areas. We deduce a value of as an upper limit to the penetration depth of the accretion disc plasma at the boundary of the magnetosphere.
11 pages 11 figures. Accepted for publication in MNRAS
References in corpus (6)
- First science with SALT: peering at the accreting polar caps of the eclipsing polar SDSS J015543.40+002807.2
- Why do some intermediate polars show soft X-ray emission? A survey of XMM-Newton spectra
- INTEGRAL and Swift observations of EXO 2030+375 during a giant outburst
- High-resolution spectroscopy of the intermediate polar EX Hydrae. I. Kinematic study and Roche tomography
- Spitzer IRS Spectroscopy of Intermediate Polars: Constraints on Mid-Infrared Cyclotron Emission
- Influence of Compton scattering on the broad-band X-ray spectra of intermediate polars