The population of AM CVn stars from the Sloan Digital Sky Survey
arXiv:0709.2951 · doi:10.1111/j.1365-2966.2007.12451.x
Abstract
The AM Canum Venaticorum stars are rare interacting white dwarf binaries, whose formation and evolution are still poorly known. The Sloan Digital Sky Survey provides, for the first time, a sample of 6 AM CVn stars (out of a total population of 18) that is sufficiently homogeneous that we can start to study the population in some detail. We use the Sloan sample to `calibrate' theoretical population synthesis models for the space density of AM CVn stars. We consider optimistic and pessimistic models for different theoretical formation channels, which yield predictions for the local space density that are more than two orders of magnitude apart. When calibrated with the observations, all models give a local space density of 1-3x10^{-6} pc^{-3}, which is lower than expected. We discuss the implications for the formation of AM CVn stars, and conclude that at least one of the dominant formation channels (the double-degenerate channel) has to be suppressed relative to the optimistic models. In the framework of the current models this suggests that the mass transfer between white dwarfs usually cannot be stabilized. We furthermore discuss evolutionary effects that have so far not been considered in population synthesis models, but which could be of influence for the observed population. We finish by remarking that, with our lower space density, the expected number of Galactic AM CVn stars resolvable by gravitational-wave detectors like LISA should be lowered from current estimates, to about 1,000 for a mission duration of one year.
Accepted to MNRAS
References in corpus (5)
Cited by in corpus (24)
- The Zwicky Transient Facility Census of the Local Universe I: Systematic search for Calcium rich gap transients reveal three related spectroscopic sub-classes
- The ELM Survey. VIII. 98 Double White Dwarf Binaries
- Evolution of Low-Mass Helium Stars in Semidetached Binaries
- The Mock LISA Data Challenges: from Challenge 1B to Challenge 3
- Astrophysics and cosmology with a decihertz gravitational-wave detector: TianGO
- Evolution of Cataclysmic Variables and Related Binaries Containing a White-Dwarf
- The Galactic Gravitational wave foreground
- Models of AM CVn star outbursts
- Long-term Photometric Behavior of Outbursting AM CVn Systems
- Parallax and Distance Estimates for Twelve Cataclysmic Variable Stars
- SDSS J080449.49+161624.8: A peculiar AM CVn star from a colour-selected sample of candidates
- Two More Candidate AM Canum Venaticorum (AM CVn) Binaries from the Sloan Digital Sky Survey
- Accretion Flows in Nonmagnetic White Dwarf Binaries as Observed in X-rays
- Discovery of a Detached, Eclipsing 40 min Period Double White Dwarf Binary and a Friend: Implications for He+CO White Dwarf Mergers
- The OmegaWhite Survey for short period variable stars II: An overview of results from the first four years
- On the progenitors of AM CVn stars as LISA sources: the evolved donor star channel
- The long-period AM CVn star SDSS J155252.48+320150.9
- Excitation of stellar oscillations by gravitational waves: hydrodynamic model and numerical results for the Sun
- The OmegaWhite survey for Short-Period Variable Stars III: Follow-up Photometric and Spectroscopic Observations
- The DECam Minute Cadence Survey II: 49 Variables but No Planetary Transits of a White Dwarf
- Astrophysics with the Laser Interferometer Space Antenna
- Population synthesis of hot subdwarf B stars with COMPAS: on the observed Galactic population
- Magnetic Interaction in Ultra-compact Binary Systems
- The evolutionary history of ultra-compact accreting binaries. I. Chemical abundances and formation channel of the eclipsing AM CVn system ZTF J225237.05-051917.4 from HST spectroscopy