Calibration of Binary Population Synthesis Models Using White Dwarf Binaries from APOGEE, GALEX and Gaia
arXiv:2505.15893 · doi:10.1051/0004-6361/202555600
Abstract
The effectiveness and stability of mass transfer in binaries system are crucial in determining its final product. Rapid binary population synthesis (BPS) codes simplify the complex physics of mass transfer by adopting parameterized prescriptions for the stability of mass transfer, accretion efficiency in stable mass transfer, and the efficiency of common-envelope ejection. We calibrate these uncertain parameters by comparing BPS models with observational data. White dwarf and main sequence binaries are an ideal population to study binary interaction, as they can be formed through stable or unstable mass transfer, or without interaction, which affect the orbital period and masses of the present-day population. The APOGEE-GALEX-Gaia catalog provides a homogeneous sample of over 500 systems with well measured radial velocities that can be used as a comparison baseline for BPS simulations of such binaries. We compare the distribution of observed maximum radial velocity variation () and estimated masses to BPS models simulated with COSMIC, varying the mass transfer and common-envelope ejection efficiency, and the criteria for mass transfer stability at key evolutionary stages. The comparison shows clear preference for a higher fraction of stable mass transfer during the first ascent giant branch, and for highly effective envelope ejection. For the systems with WD masses, there is a slight preference for non-conservative mass transfer. In COSMIC and similar codes, the envelope ejection efficiency and the envelope binding energy are degenerate parameters. Our result of high ejection efficiency may indicate that either additional sources of energy are required to eject the envelope, or that its binding energy is lower than traditionally assumed. Future comparisons to BPS simulations can be drawn for other datasets as they become available.
12 pages, submitted to A&A. Comments welcome!
References in corpus (39)
- The Wide-field Infrared Survey Explorer (WISE): Mission Description and Initial On-orbit Performance
- Modules for Experiments in Stellar Astrophysics (MESA)
- Evolution of binary stars and the effect of tides on binary populations
- A Survey of Stellar Families: Multiplicity of Solar-Type Stars
- The Apache Point Observatory Galactic Evolution Experiment (APOGEE)
- Gaia Early Data Release 3: The astrometric solution
- Common Envelope Evolution: Where we stand and how we can move forward
- Compact Object Modeling with the StarTrack Population Synthesis Code
- Modules for Experiments in Stellar Astrophysics (MESA): Time-Dependent Convection, Energy Conservation, Automatic Differentiation, and Infrastructure
- The Evolution of Compact Binary Star Systems
- Evolutionary and pulsational properties of white dwarf stars
- COSMIC Variance in Binary Population Synthesis
- Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency
- Theoretical uncertainties of the type Ia supernova rate
- Post-common-envelope binaries from SDSS. XI: The white dwarf mass distributions of CVs and pre-CVs
- On the alpha formalism for the common envelope interaction
- The binarity of the local white dwarf population
- Adiabatic Mass Loss in Binary Stars - I. Computational Method
- Gaia Data Release 3. Astrometric binary star processing
- Stellar Multiplicity Meets Stellar Evolution And Metallicity: The APOGEE View
- Mass Transfer from Giant Donors
- StarHorse results for spectroscopic surveys + Gaia DR3: Chrono-chemical populations in the solar vicinity, the genuine thick disk, and young-alpha rich stars
- Adiabatic mass loss in binary stars. III. From the base of the red giant branch to the tip of asymptotic giant branch
- Common envelope events with low-mass giants: understanding the energy budget
- Coping with loss: Stability of mass transfer from post-main sequence donor stars
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: The effects of including recombination energy
- Triage of the Gaia DR3 astrometric orbits. I. A sample of binaries with probable compact companions
- The Close Binary Fraction as a Function of Stellar Parameters in APOGEE: A Strong Anti-Correlation With Abundances
- On the use of hydrogen recombination energy during common envelope events
- The White Dwarf Binary Pathways Survey I: A sample of FGK stars with white dwarf companions
- White dwarf binaries suggest a common envelope efficiency
- A Census of Blue Stragglers in Gaia DR2 Open Clusters as a Test of Population Synthesis and Mass Transfer Physics
- Wide post-common envelope binaries from Gaia: orbit validation and formation models
- Applying the metallicity-dependent binary fraction to double white dwarf formation: Implications for LISA
- Formation of long-period post-common-envelope binaries I. No extra energy is needed to explain oxygen-neon white dwarfs paired with AFGK-type main-sequence stars
- White dwarf binaries Across the H-R Diagram
- Recovering Injected Astrophysics from the LISA Galactic Double White Dwarf Binaries
- Reconstructing post-common envelope white dwarf+main sequence binary histories through inverse population synthesis techniques
- Analysis of Previously Classified White Dwarf-Main Sequence Binaries Using Data from the APOGEE Survey