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2022ApJ...925...83Z - Astrophys. J., 925, 83-83 (2022/January-3)

The Disk Veiling Effect of the Black Hole Low-mass X-Ray Binary A0620-00.

ZHENG W.-M., WU Q., WU J., WANG S., SUN M., GUO J., LIU J., YI T., ZHANG Z.-X., GU W.-M., WANG J., GOU L., LIU J., CALLANAN P.J., HO L.C., LONGA-PENA P., OROSZ J.A. and REYNOLDS M.T.

Abstract (from CDS):

The optical light curves of quiescent black hole low-mass X-ray binaries often exhibit significant nonellipsoidal variabilities, showing the photospheric radiation of the companion star is veiled by other sources of optical emission. Assessing this "veiling" effect is critical to the black hole mass measurement. Here in this work, we carry out a strictly simultaneous spectroscopic and photometric campaign on the prototype of black hole low-mass X-ray binary A0620-00. We find that for each observation epoch, the extra optical flux beyond a pure ellipsoidal modulation is positively correlated with the fraction of veiling emission, indicating the accretion disk contributes most of the nonellipsoidal variations. Meanwhile, we also obtain a K2V spectral classification of the companion, as well as the measurements of the companion's rotational velocity vsini=83.8±1.9 km s–1 and the mass ratio between the companion and the black hole q = 0.063 ± 0.004.

Abstract Copyright: © 2022. The Author(s). Published by the American Astronomical Society.

Journal keyword(s): Astrophysical black holes - High energy astrophysics - Stellar mass black holes - X-ray binary stars

Simbad objects: 7

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