The Turn-On of Mass Transfer in AM CVn Binaries: Implications for RX J0806+1527 and RX J1914+2456
arXiv:astro-ph/0608442 · doi:10.1086/508372
Abstract
We report on evolutionary calculations of the onset of mass transfer in AM CVn binaries, treating the donor's evolution in detail. We show that during the early contact phase, while the mass transfer rate, $\Mdot$, is increasing, gravity wave (GW) emission continues to drive the binary to shorter orbital period, $\Porb$. We argue that the phase where $\Mdot > 0$ and $\nudot > 0$ ($ν= 1/\Porb$) can last between and yrs, significantly longer than previously estimated. These results are applied to RX J0806+1527 ($\Porb = 321$ s) and RX J914+2456 ($\Porb=569$ s), both of which have measured $\nudot > 0$. \emph{Thus, a $\nudot > 0$ does not select between the unipolar inductor and accretion driven models proposed as the source of X-rays in these systems}. For the accretion model, we predict for RX J0806 that $\ddotν \approx \ee{1.0-1.5}{-28}$ Hz s and argue that timing observations can probe at this level with a total yr baseline. We also place constraints on each system's initial parameters given current observational data.
5 pages, 3 figures, accepted to ApJL
References in corpus (1)
Cited by in corpus (18)
- Faint Thermonuclear Supernovae from AM Canum Venaticorum Binaries
- Thermonuclear .Ia Supernovae from Helium Shell Detonations: Explosion Models and Observables
- A 12 minute Orbital Period Detached White Dwarf Eclipsing Binary
- Spectroscopic Evidence for a 5.4-Minute Orbital Period in HM Cancri
- The Thermal Evolution of the Donors in AM CVn Binaries
- Accreting Double white dwarf binaries: Implications for LISA
- Energy Dissipation through Quasi-Static Tides in White Dwarf Binaries
- ULTRACAM Photometry of the ultracompact binaries V407 Vul and HM Cnc
- Two decades of optical timing of the shortest-period binary star system HM Cancri
- Swift X-ray and ultraviolet observations of the shortest orbital period double-degenerate system RX J0806.3+1527 (HM Cnc)
- Orbital Period Increase in ES Ceti
- The photometric period in ES Ceti
- SPH Simulations of Direct Impact Accretion in the Ultracompact AM CVn Binaries
- The influence of short term variations in AM CVn systems on LISA measurements
- Astrophysics with the Laser Interferometer Space Antenna
- The double helium-white dwarf channel for the formation of AM CVn binaries
- Tracking the Long-Term GW Phase Evolution for HM Cancri-like Binaries with LISA
- Potential Tertiary Effects on the LISA Verification Binary HM Cancri