Numerical simulation of the surface flow of a companion star in a close binary system
arXiv:astro-ph/0208200 · doi:10.1051/0004-6361:20021102
Abstract
We simulate numerically the surface flow of a gas-supplying companion star in a semi-detached binary system. Calculations are carried out for a region including only the mass-losing star, thus not the mass accreting star. The equation of state is that of an ideal gas characterized by a specific heat ratio gamma, and the case with gamma=5/3 is mainly studied. A system of eddies appears on the surface of the companion star: an eddy in the low pressure region near the L1 point, one around the high pressure at the north pole, and one or two eddies around the low pressure at the opposite side of the L1 point. Gas elements starting near the pole region rotate clockwise around the north pole (here the binary system rotates counter-clockwise as seen from the north pole). Because of viscosity, the gas drifts to the equatorial region, switches to the counter-clockwise eddy near the L1 point and flows through the L1 point to finally form the L1 stream. The flow field in the L1 region and the structure of the L1 stream are also considered.
10 pages, 22 figures, Accepted for publication in A&A
References in corpus (2)
Cited by in corpus (11)
- Statistics of 700 individually studied W UMa stars
- Large scale circulations and energy transport in contact binaries
- Time sequence spectroscopy of AW UMa. The 518 nm Mg I triplet region analyzed with Broadening Functions
- Modelling the Recurrent Nova CI Aql in Quiescence
- Roche tomography of cataclysmic variables - VI. Differential rotation of AE Aqr - Not tidally locked!
- Enhanced mass transfer during dwarf nova outbursts by irradiation of the secondary?
- Time sequence spectroscopy of Epsilon CrA. The 518 nm Mg I triplet region analyzed with Broadening Functions
- SPH Simulations of Direct Impact Accretion in the Ultracompact AM CVn Binaries
- Light curve analysis of six totally eclipsing W UMa binaries
- Hydrodynamic 3D Simulation of Roche Lobe Overflow in High-mass X-Ray Binaries
- Numerical Simulation of the Surface Flow on the Companion Star in a Close Binary System II. Construction of Doppler maps and application to Galactic supersoft X-ray sources