The Thermal Evolution of the Donors in AM CVn Binaries
arXiv:0708.0220 · doi:10.1111/j.1365-2966.2007.12262.x
Abstract
(Abridged) We calculate the full stellar-structural evolution of donors in AM CVn systems formed through the WD channel coupled to the binary's evolution. Contrary to assumptions made in prior modelling, these donors are not fully convective over much of the AM CVn phase and do not evolve adiabatically under mass loss indefinitely. Instead, we identify three distinct phases of evolution: a mass transfer turn-on phase (during which the orbital period continues to decrease even after contact, the donor contracts, and the mass transfer rate accelerates to its maximum), a phase in which the donor expands adiabatically in response to mass loss, and a cooling phase beginning at orbital periods of approximately 45--55 minutes during which the donor contracts. The physics that determines the behaviour in the first and third phases, both of which are new outcomes of this study, are discussed in some detail. We find the overall duration of the turn-on phase to be between - yrs, significantly longer than prior estimates. We predict the donor's luminosity and effective temperature. During the adiabatic expansion phase (ignoring irradiation effects), the luminosity is approximately -- and the effective temperature is approximately 1000--1800 K. However, the flux generated in the accretion flow dominates the donor's intrinsic light at all times. The impact of irradiation on the donor extends the phase of adiabatic expansion to longer orbital periods and alters the donor's observational characteristics. Irradiated donors during the adiabatic phase can attain a surface luminosity of up to . We argue that the turn-on and cooling phases both will leave significant imprints on the AM CVn population's orbital period distribution.
(20 pages, 20 figures, accepted to the Monthly Notices of the Royal Astronomical Society)
References in corpus (1)
Cited by in corpus (33)
- The Evolution of Compact Binary Star Systems
- He-Accreting WDs: accretion regimes and final outcomes
- Evolution of Low-Mass Helium Stars in Semidetached Binaries
- Stability of helium accretion discs in ultracompact binaries
- The population of AM CVn stars from the Sloan Digital Sky Survey
- Models of AM CVn star outbursts
- Discovery and characterization of five new eclipsing AM CVn systems
- SDSS J080449.49+161624.8: A peculiar AM CVn star from a colour-selected sample of candidates
- Spectroscopic and Photometric Periods of Six Ultracompact Accreting Binaries
- Reversing the verdict: Cataclysmic variables could be the dominant progenitors of AM CVn binaries after all
- Mass Transfer and Stellar Evolution of the White Dwarfs in AM CVn Binaries
- Extremely low-mass white dwarf stars observed in Gaia DR2 and LAMOST DR8
- Evidence that short period AM CVn systems are diverse in outburst behaviour
- The Magnetized White Dwarf + Helium star Binary Evolution with Accretion-induced Collapse
- The long-period AM CVn star SDSS J155252.48+320150.9
- Evolution of AM CVn binaries with WD donors
- Orbital decay in an accreting and eclipsing 13.7 minute orbital period binary with a luminous donor
- Measuring the Galactic Binary Fluxes with LISA: Metamorphoses and Disappearances of White Dwarf Binaries
- Phase-Resolved Spectroscopy of Gaia14aae: Line Emission From Near the White Dwarf Surface
- Dynamical He Flashes in Double White Dwarf Binaries
- Evolved cataclysmic variables as progenitors of AM CVn stars
- Quantum ion thermodynamics in liquid interiors of white dwarfs
- Formation and Evolution of Accreting Compact Objects
- A Catalogue of Ultracompact Mass-Transferring White Dwarf Binaries
- New insights into the helium star formation channel of AM CVn systems with explanations of Gaia14aae and ZTFJ1637+49
- Observing white dwarf tidal stripping with TianQin gravitational wave observatory
- NSV 1440: First WZ Sge-type Object in AM CVn stars and candidates
- Probing the efficiency of tidal synchronization in outspiralling double white dwarf binaries with LISA
- SPH Simulations of Direct Impact Accretion in the Ultracompact AM CVn Binaries
- The Fast Evolving, Tremendous and Blue Superoutburst in ASASSN-21au Reveals a Dichotomy in the Outbursts of Long-period AM CVns
- Measuring mass transfer of AM CVn binaries with a space-based gravitational wave detector
- Challenging the disk instability model: I -- The case of YZ LMi
- 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