Modelling rebrightenings, reflares, and echoes in dwarf nova outbursts
arXiv:2104.02952 · doi:10.1051/0004-6361/202140548
Abstract
The disc instability model accounts well for most of the observed properties of dwarf novae and soft X-ray transients, but the rebrightenings, reflares, and echoes occurring at the end of outbursts or shortly after in WZ Sge stars or soft X-ray transients have not yet been convincingly explained by any model. We determine the additional ingredients that must be added to the DIM to account for the observed rebrightenings. We analyse in detail a recently discovered system, TCP J21040470+4631129, which has shown very peculiar rebrightenings, model its light curve using our numerical code including mass transfer variations from the secondary, inner-disc truncation, disc irradiation by a hot white dwarf and, in some cases, the mass-transfer stream over(under)flow. We show that the luminosity in quiescence is dominated by a hot white dwarf that cools down on time scales of months. The mass transfer rate from the secondary has to increase by several orders of magnitudes during the initial superoutburst for a reason that remains elusive, slowly returning to its secular average, causing the observed succession of outbursts with increasing quiescence durations, until the disc can be steady, cold, and neutral; its inner parts being truncated either by the white dwarf magnetic field or by evaporation. The very short, quiescence phases between reflares are reproduced when the mass-transfer stream overflows the disc. Using similar additions to the DIM, we have also produced light curves close to those observed in two WZ Sge stars, the prototype and EG Cnc. Our model successfully explains the reflares observed in WZ Sge systems. It requires, however, the inner disc truncation in dwarf novae to be due not (only) to the white dwarf magnetic field but, as in X-ray binaries, rather to evaporation of the inner disc. A similar model could also explain reflares observed in soft X-ray transients.
13 pages, 11 figures. Accepted for publication in A&A
References in corpus (14)
- Strong disc winds traced throughout outbursts in black-hole X-ray binaries
- The viscosity parameter alpha and the properties of accretion disc outbursts in close binaries
- Dwarf Nova Outbursts with Magnetorotational Turbulence
- Dynamical constraints on the component masses of the cataclysmic variable WZ Sge
- HST/STIS Spectroscopy and Modeling of the Long Term Cooling of WZ Sagittae following the July 2001 Outburst
- The impact of thermal winds on the outburst lightcurves of black hole X-ray binaries
- Impact of convection and resistivity on angular momentum transport in dwarf novae
- SU Uma stars: Rebrightenings after superoutburst
- Hydrodynamic simulations of irradiated secondaries in dwarf novae
- Modelling hystereses observed during dwarf-nova outbursts
- First Detection of Two Superoutbursts during Rebrightening Phase of a WZ Sge-type Dwarf Nova: TCP J21040470+4631129
- Magnetic field transport in compact binaries
- XMM-Newton and Swift observations of WZ Sge: spectral and timing analysis
- Multi-wavelength photometry during the 2018 superoutburst of the WZ Sge-type dwarf nova EG Cancri
Cited by in corpus (8)
- TACOS: TESS AM~CVn Outbursts Survey
- Seven reflares, a mini-outburst and an outburst : High amplitude optical variations in the black hole X-ray binary Swift J1910.2-0546
- Discovery of Persistent Quasi-Periodic Oscillations in Accreting White Dwarfs: A New Link to X-ray Binaries
- Two-dimensional simulations of disks in close binaries: Simulating outburst cycles in cataclysmic variables
- The Fast Evolving, Tremendous and Blue Superoutburst in ASASSN-21au Reveals a Dichotomy in the Outbursts of Long-period AM CVns
- 2021 superoutburst of WZ Sge-type dwarf nova V627 Pegasi lacks an early superhump phase
- TCP J072226836220548: a new AM CVn type system with infrequent outbursts
- OGLE-BLG504.12.201843: A possible extreme dwarf nova