WD mass and orbital period relation of sdB + He WD binaries
arXiv:2106.04361 · doi:10.1093/mnras/stab1627
Abstract
Most subdwarf B (sdB) + Helium white dwarf (He WD) binaries are believed to be formed from a particular channel. In this channel, the He WDs are produced first from red giants (RGs) with degenerate cores via stable mass transfer and sdB stars are produced from RGs with degenerate cores via common envelope (CE) ejection. They are important for the studies of CE evolution, binary evolution, and binary population synthesis. However, the relation between WD mass and orbital period of sdB + He WD binaries has not been specifically studied. In this paper, we first use a semi-analytic method to follow their formation and find a WD mass and orbital period relation. Then we use a detailed stellar evolution code to model their formation from main-sequence binaries. We find a similar relation between the WD mass and orbital period, which is in broad agreement with observations. For most sdB + He WD systems, if the WD mass (orbital period) can be determined, the orbital period (WD mass) can be inferred with this relation and then the inclination angle can be constrained with the binary mass function. In addition, we can also use this relation to constrain the CE ejection efficiency and find that a relative large CE ejection efficiency is favoured. If both the WD and sdB star masses can be determined, the critical mass ratios of dynamically unstable mass transfer for RG binaries can also be constrained.
6 pages, 5 figures, accepted for publication in MNRAS
References in corpus (7)
- Modules for Experiments in Stellar Astrophysics (MESA)
- A binary model for the UV-upturn of elliptical galaxies (MNRAS version)
- Hot subdwarf binaries from the MUCHFUSS project - Analysis of 12 new systems and a study of the short-period binary population
- Testing the white dwarf mass-radius relationship with eclipsing binaries
- Mass transfer from a giant star to a main sequence companion and its contribution to long-orbital-period blue stragglers
- The Future is Now: the Formation of Single Low Mass White Dwarfs in the Solar Neighborhood
- PTF1 J082340.04+081936.5: A hot subdwarf B star with a low mass white dwarf companion in an 87 minute orbit