Implications of X-Ray Line Variations for 4U1822-371
arXiv:1007.3839 · doi:10.1088/0004-637X/729/2/102
Abstract
4U 1822-371 is one of the proto-type accretion disk coronal sources with an orbital period of about 5.6 hours. The binary is viewed almost edge-on at a high inclination angle of 83 degrees, which makes it a unique candidate to study binary orbital and accretion disk dynamics in high powered X-ray sources. We observed the X-ray source in 4U 1822-371 with the Chandra High Energy Transmission Grating Spectrometer (HETGS) for almost nine binary orbits. X-ray eclipse times provide an update of the orbital ephemeris. We find that our result follows the quadratic function implied by previous observations; however, it suggests a flatter trend. Detailed line dynamics also confirm a previous suggestion that the observed photo-ionized line emission originates from a confined region in the outer edge of the accretion disk near the hot spot. Line properties allow us to impose limits on the size of accretion disk, the central corona, and the emission region. The photo-ionized plasma is consistent with ionization parameters of log(xi) > 2, and when combined with disk size and reasonable assumptions for the plasma density, this suggests illuminating disk luminosities which are over an order of magnitude higher than what is actually observed. That is, we do not directly observe the central emitting X-ray source. The spectral continua are best fit by a flat power law with a high energy cut-off and partial covering absorption (N_H ranging from 5.4-6.3x10^{22} cm^{-2}) with a covering fraction of about 50%. We discuss some implications of our findings with respect to the photo-ionized line emission for the basic properties of the X-ray source.
Submitted to the Astrophysical Journal
References in corpus (1)
Cited by in corpus (11)
- X-ray spectroscopy of the ADC source X1822-371 with Chandra and XMM-Newton
- Detailed study of the X-ray and Optical/UV orbital ephemeris of X1822-371
- Phase-resolved optical and X-ray spectroscopy of low-mass X-ray binary X1822-371
- The Origins of X-ray Line Emissions in Circinus~X-1 at Very Low X-ray Flux
- New Constraints on the Geometry and Kinematics of Matter Surrounding the Accretion Flow in X-ray Binaries from HETG X-ray Spectroscopy
- The X-ray Pulsar 2A 1822-371 as a Super Eddington source
- Disc-corona interaction in the heartbeat state of GRS 1915+105
- Anomalous orbital expansion of low-mass X-ray binary 2A 1822-371: the existence of a circumbinary disk?
- On the rapid orbital expansion in the compact low-mass X-ray binary 2A 1822371
- Accretion disc winds in X-ray binaries
- Measuring interacting binary mass functions with X-ray fluorescence