Post-common Envelope Evolution of Helium-core White Dwarfs
arXiv:2506.05618 · doi:10.1051/0004-6361/202554891
Abstract
Helium-core white dwarfs (He WDs) formed through common envelope (CE) evolution offer valuable insight into binary interaction channels and compact remnant formation. Their cooling rates critically impact both detectability and age estimates in close binaries. Compared to He WDs formed via stable Roche-lobe overflow (SRLOF), those from the CE channel undergo markedly different mass-loss histories, resulting in distinct post-CE evolutionary behavior. We explore how the mass of the residual hydrogen envelope (Mh) shapes the cooling evolution of CE He WDs, focusing on the role of the bifurcation point in setting Mh and enabling residual hydrogen burning. Using the LPCODE stellar evolution code, we computed models of He WDs with masses from 0.20 to 0.42 solar masses, evolving from post-CE conditions to the white dwarf cooling track. Two evolutionary branches emerge: (i) non-flashing sequences, which cool rapidly with negligible hydrogen burning, and (ii) flashing sequences, where hydrogen shell flashes alter the envelope structure prior to cooling. Minimal-envelope models cool within 5-130 million years for effective temperatures between 12,000 and 27,000 K, and reach in approx. 300 million years at lower temperatures, remaining much younger than SRLOF counterparts. In contrast, models with more hydrogen retain active nuclear burning, delaying cooling and yielding ages of several billion years. Flashing sequences prolong the pre-white dwarf phase, though still shorter than in SRLOF evolution. The value of Mh also affects WD mass and surface gravity estimates, introducing systematic shifts with respect to SRLOF WDs. Our results show that CE He WDs follow distinct evolutionary paths, with important implications for interpreting the nature and fate of compact binaries hosting He WDs.
9 pages, 9 figures. Accepted for publicacion in Astronomy and Astrophysics
References in corpus (13)
- The ELM Survey. I. A Complete Sample of Extremely Low Mass White Dwarfs
- Common envelope ejection in massive binary stars - Implications for the progenitors of GW150914 and GW151226
- The ELM Survey. VIII. 98 Double White Dwarf Binaries
- White dwarf evolutionary sequences for low-metallicity progenitors: The impact of third dredge-up
- Common envelope events with low-mass giants: understanding the transition to the slow spiral-in
- Precise Atmospheric Parameters for the Shortest Period Binary White Dwarfs: Gravitational Waves, Metals, and Pulsations
- Near-Infrared Photometry of Globular Clusters Towards the Galactic Bulge: Observations and Photometric Metallicity Indicators
- Binary Stars in the New Millennium
- White dwarf binaries suggest a common envelope efficiency
- On the white dwarf cooling sequence of the globular cluster Omega Centauri
- A proto-helium white dwarf stripped by a substellar companion via common-envelope ejection -- Uncovering the true nature of a candidate hypervelocity B-type star
- The evolution of white dwarfs resulting from helium-enhanced, low-metallicity progenitor stars
- New DA white dwarf models for asteroseismology of ZZ Ceti stars
Cited by in corpus (5)
- A 500 pc volume-limited sample of hot subluminous stars II. Atmospheric parameters, mass distribution, and kinematics
- Extreme mass loss during common envelope evolution: the origin of the double low-mass white dwarf system J2102--4145
- Formation of Extremely Low-mass White Dwarf Binaries Undergoing Enhanced Angular Momentum Loss
- Two hot pre-white dwarfs inside the red-giant-branch planetary nebula Pa 13 -- Double core evolution or common envelope-induced rejuvenation?
- Discovery of a double white dwarf in the Galactic globular cluster NGC 6397