The evolution of carbon-polluted white dwarfs at low effective temperatures
arXiv:1910.06168 · doi:10.1093/mnras/stz2915
Abstract
Taking advantage of the Gaia Data Release 2, recent studies have revisited the evolution of carbon-polluted white dwarfs (DQs) across a large range of effective temperatures. These analyses have clearly confirmed the existence of two distinct DQ evolutionary sequences: one with normal-mass white dwarfs and one with heavily polluted and generally more massive objects. The first sequence is thought to result from the dredge-up of carbon from the core, while the second could at least partially be made of descendants of Hot DQs. However, the evolution of carbon-polluted white dwarfs below 6500 K remains unexplored, mainly due to the theoretical difficulties associated with modelling their dense atmospheres. In this work, we present a detailed star-by-star analysis of cool carbon-polluted white dwarfs. Our recently improved atmosphere models allow us to obtain good fits to most objects, including very cool DQpec white dwarfs with strongly shifted C molecular bands. We show that cool carbon-polluted white dwarfs keep following the two distinct evolutionary tracks previously identified at higher temperatures. We also find that most DQ white dwarfs transform into DQpec when their photospheric densities exceed 0.15 g/cm. However, we identify stars for which the DQDQpec transition occurs at lower photospheric densities, possibly due to the presence of a strong magnetic field.
10 pages, 5 figures, 2 tables. Accepted for publication in the Monthly Notices of the Royal Astronomical Society
References in corpus (10)
- The Gaia mission
- Found: The missing blue opacity in atmosphere models of cool hydrogen white dwarfs
- Rare White dwarf stars with carbon atmospheres
- Hot DQ White Dwarfs: Something Different
- Evryscope science: exploring the potential of all-sky gigapixel-scale telescopes
- A New Generation of Cool White Dwarf Atmosphere Models. IV. Revisiting the Spectral Evolution of Cool White Dwarfs
- New DQ white dwarfs in the Sloan Digital Sky Survey DR4: confirmation of two sequences
- C_2 in Peculiar DQ White Dwarfs
- Pressure Distortion of the H-He Collision-Induced Absorption at the Photosphere of Cool White Dwarf Stars
- Rayleigh scattering in dense fluid helium
Cited by in corpus (15)
- A catalogue of white dwarfs in Gaia EDR3
- The 100 pc White Dwarf Sample in the SDSS Footprint
- Current challenges in the physics of white dwarf stars
- The 40 pc sample of white dwarfs from Gaia
- On the Spectral Evolution of Hot White Dwarf Stars. III. The PG 1159DODBDQ Evolutionary Channel Revisited
- On the Spectral Evolution of Hot White Dwarf Stars. II. Time-dependent Simulations of Element Transport in Evolving White Dwarfs with STELUM
- White dwarf and subdwarf stars in the Sloan Digital Sky Survey Data Release 16
- The spectral evolution of white dwarfs: where do we stand?
- White dwarf Random Forest classification through Gaia spectral coefficients
- Carbon dredge-up required to explain the Gaia white dwarf colour-magnitude bifurcation
- The non-explosive stellar merging origin of the ultra-massive carbon-rich white dwarfs
- Spectral analysis of cool white dwarfs accreting from planetary systems: from the UV to the optical
- Missing metals in DQ stars: A simple explanation
- Search of nearby resolved neutron stars among optical sources
- J-PLUS: Understanding outlier white dwarfs in the third data release via dimensionality reduction