paper

The accretion disk corona and disk atmosphere of 4U 1624-490 as viewed by the Chandra-HETGS

arXiv:0905.3925 · doi:10.1088/0004-637X/701/2/984

Abstract

We present a detailed spectral study (photoionization modelling and variability) of the "Big Dipper" 4U 1624-490 based on a \chandra-High Energy Transmission Gratings Spectrometer (HETGS) observation over the ks binary orbit of 4U 1624-490. While the continuum spectrum can be modeled using a blackbody plus power-law, a slightly better fit is obtained using a single power-law partially (71%) covered by a local absorber of column density . The data show a possible quasi-sinusoidal modulation with period ks that might be due to changes in local obscuration. Photoionization modeling with the {\sc xstar} code and variability studies of the observed strong \ion{Fe}{25} and \ion{Fe}{26} absorption lines point to a two-temperature plasma for their origin: a highly ionized component of ionization parameter ( K) associated with an extended accretion disk corona of radius cm, and a less ionized more variable component of ( K) and ( K) coincident with the accretion disk rim. We use this, with the observed \ion{Fe}{25} and \ion{Fe}{26} absorption line variations (in wavelength, strength, and width) to construct a viewing geometry that is mapped to changes in plasma conditions over the 4U 1624-490 orbital period.

27 pages, 7 figures, 6 tables, accepted for publication in ApJ

References in corpus (4)

The accretion disk corona and disk atmosphere of 4U 1624-490 as viewed by the Chandra-HETGS · wovepaper