Rare White dwarf stars with carbon atmospheres
arXiv:0711.3227 · doi:10.1038/nature06318
Abstract
White dwarfs represent the endpoint of stellar evolution for stars with initial masses between approximately 0.07 msun and 8-10 msun, where msun is the mass of the Sun (more massive stars end their life as either black holes or neutron stars). The theory of stellar evolution predicts that the majority of white dwarfs have a core made of carbon and oxygen, which itself is surrounded by a helium layer and, for ~80 per cent of known white dwarfs, by an additional hydrogen layer. All white dwarfs therefore have been traditionally found to belong to one of two categories: those with a hydrogen-rich atmosphere (the DA spectral type) and those with a helium-rich atmosphere (the non-DAs). Here we report the discovery of several white dwarfs with atmospheres primarily composed of carbon, with little or no trace of hydrogen or helium. Our analysis shows that the atmospheric parameters found for these stars do not fit satisfactorily in any of the currently known theories of post-asymptotic giant branch evolution, although these objects might be the cooler counterpart of the unique and extensively studied PG1159 star H1504+65. These stars, together with H1504+65, might accordingly form a new evolutionary sequence that follow the asymptotic giant branch.
7 pages, 1 figure, to appear in Nov 22nd 2007 edition of Nature
References in corpus (1)
Cited by in corpus (14)
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- Hot DQ White Dwarfs: Something Different
- SDSS J142625.71+575218.3, a Prototype for a New Class of Variable White Dwarf
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- SDSS J142625.71+575218.3: The First Pulsating White Dwarf with a Large Detectable Magnetic Field
- Might Carbon-Atmosphere White Dwarfs Harbour a New Type of Pulsating Star?
- Evidence of thin helium envelopes in PG1159 stars
- On the formation of hot DQ white dwarfs
- Two New Variable Hot DQ Stars
- Follow-up Studies of the Pulsating Magnetic White Dwarf SDSS J142625.71+575218.3
- A Progress Report on the Carbon Dominated Atmosphere White Dwarfs
- Constraining the Surface Inhomogeneity and Settling Times of Metals on Accreting White Dwarfs
- On the origin of white dwarfs with carbon-dominated atmospheres: the case of H1504+65
- Pulsation in carbon-atmosphere white dwarfs: A new chapter in white dwarf asteroseismology