Context. Extremely low-mass white dwarf (ELM WD; M⁎ ≲ 0.18-0.20 M⊙) stars are thought to be formed in binary systems via stable or unstable mass transfer. Although stable mass transfer predicts the formation of ELM WDs with thick hydrogen (H) envelopes that are characterized by dominant residual nuclear burning along the cooling branch, the formation of ELM WDs with thinner H envelopes from unstable mass loss cannot be discarded. Aims. We compute new evolutionary sequences for helium (He) core WD stars with thin H envelopes with the main aim of assessing the lowest Teff that could be reached by this type of stars. Methods. We generate a new grid of evolutionary sequences of He-core WD stars with thin H envelopes in the mass range from 0...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Extremely low-mass white dwarf (ELM WD; M⁎ ≲ 0.18-0.20 M⊙) stars are thought to be formed i...
Context. Extremely low-mass white dwarf (ELM WD; M⁎ ≲ 0.18-0.20 M⊙) stars are thought to be formed i...
Context. Extremely low-mass white dwarf (ELM WD; M∗ ≲ 0.18-0.20 M⊙) stars are thought to be formed i...
Context. Extremely low-mass white dwarf (ELM WD; M⋆ ≲ 0.18–0.20 M⊙) stars are thought to be formed i...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
Context. Two of the possible channels for the formation of low-mass (M⋆ ≲ 0.5 M⊙) hydrogen-deficient...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Extremely low-mass white dwarf (ELM WD; M⁎ ≲ 0.18-0.20 M⊙) stars are thought to be formed i...
Context. Extremely low-mass white dwarf (ELM WD; M⁎ ≲ 0.18-0.20 M⊙) stars are thought to be formed i...
Context. Extremely low-mass white dwarf (ELM WD; M∗ ≲ 0.18-0.20 M⊙) stars are thought to be formed i...
Context. Extremely low-mass white dwarf (ELM WD; M⋆ ≲ 0.18–0.20 M⊙) stars are thought to be formed i...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
Context. The number of detected extremely low-mass (ELM) white dwarf stars has increased drastically...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
Context. Two of the possible channels for the formation of low-mass (M⋆ ≲ 0.5 M⊙) hydrogen-deficient...
We study the full evolution of low-mass white dwarfs with helium and oxygen cores. We revisit the ag...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...
Context. Some low-mass white-dwarf (WD) stars with H atmospheres currently being detected in our gal...