Infrared photometry of the dwarf nova V2051 Ophiuchi: II -- The quiescent accretion disc and its spiral arms
arXiv:1912.06094 · doi:10.1093/mnras/stz3517
Abstract
We report the analysis of time-series of infrared photometry of the dwarf nova V2051 Oph in quiescence with eclipse mapping techniques to investigate structures and the spectrum of its accretion disc. The light curves after removal of the ellipsoidal variations caused by the mass-donor star show a double-wave modulation signalling the presence of two asymmetric light sources in the accretion disc. Eclipse maps reveal two spiral arms on top of the disc emission, one at and the other at (where is the distance from disc centre to the inner Lagrangian point), which are seen face-on at binary phases consistent with the maxima of the double-wave modulation. The wide open angle inferred for the spiral arms () suggests the quiescent accretion disc of V2051 Oph has high viscosity. The accretion disc is hot and optically thin in its inner regions ( and surface densities ), and becomes cool and opaque in its outer regions.
11 pages, 6 figures, accepted for publication at MNRAS
References in corpus (5)
- The Gaia mission
- A study of the evolution of the accretion disk of V2051 Oph through two outburst cycles
- SOAR observations of the high-viscosity accretion disc of the dwarf nova V4140 Sagitarii in quiescence and in outburst
- Spiral structures and temperature distribution in the quiescent accretion disc of the cataclysmic binary V2051 Ophiuchi
- Infrared photometry of the dwarf nova V2051 Ophiuchi: I - The mass donor star and the distance
Cited by in corpus (4)
- Modelling hystereses observed during dwarf-nova outbursts
- Colors and patterns of black hole X-ray binary GX 339-4
- Point-wise Self-similar Solution for Spiral Shocks in Accretion Disk with Mass Outflow in Binary
- Spiral shocks induced in galactic gaseous disk: hydrodynamic understanding of observational properties of spiral galaxies