Synthetic Direct Impact Light Curves of the Ultracompact AM CVn Binary Systems V407 Vul and HM Cnc
arXiv:0901.2854 · doi:10.1111/j.1365-2966.2009.14520.x
Abstract
The interacting binary white dwarf (AM CVn) systems HM Cnc and V407 have orbital periods of 5.4 min and 9.5 min, respectively. The two systems are characterized by an "on/off" behaviour in the X-ray light curve, and optical light curves that are nearly sinusoidal and which lead the X-ray light curves in phase by about 0.2 in both systems. Of the models that have been proposed to explain the observations, the one that seems to require the least fine tuning is the direct impact model of Marsh & Steeghs (2002). In this model, the white dwarf primary is large enough relative to the semi-major axis that the accretion stream impacts the surface of the primary white dwarf directly without forming an accretion disc. Marsh & Steeghs proposed that in this situation there could be a flow set up around the equator with a decreasing surface temperature the further one measured from the impact point. In this study, we estimate the light curves that might result from such a temperature distribution, and find them to be reasonable approximations to the observations. One unexpected result is that two distinct X-ray spots must exist to match the shape of the X-ray light curves.
9 Pages, 7 figures, MNRAS accepted for publication
References in corpus (5)
- PLUTO: a Numerical Code for Computational Astrophysics
- The Stability of Double White Dwarf Binaries Undergoing Direct Impact Accretion
- ULTRACAM Photometry of the ultracompact binaries V407 Vul and HM Cnc
- GEMINI spectroscopy of the ultra-compact binary candidate V407 Vul
- SPH Simulations of Direct Impact Accretion in the Ultracompact AM CVn Binaries
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- A Mass Transferring Brown Dwarf Binary on a 57 Minute Orbit
- X-ray emission mechanisms in accreting white dwarfs