The formation of DA white dwarfs with thin hydrogen envelopes
L. G. Althaus, M. M. Miller Bertolami, A. H. Córsico, Enrique García-Berro, Pilar Gil-Pons
Abstract
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L. G. Althaus, M. M. Miller Bertolami, A. H. Córsico, Enrique García-Berro, Pilar Gil-Pons
Abstract
Open-access reader
We study the formation and evolution of DA white dwarfs, the progenitors of which have experienced a late thermal pulse (LTP) shortly after the departure from the thermally pulsing AGB. To this end, we compute the complete evolution of an initially star all the way from the zero-age main sequence to the white dwarf stage. We find that most of the original H-rich material of the post-AGB remnant is burnt during the post-LTP evolution, with the result that, at entering its white dwarf cooling track, the remaining H envelope becomes in agreement with asteroseismological inferences for some ZZ Ceti stars.
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We study the formation and evolution of DA white dwarfs, the progenitors of which have experienced a late thermal pulse (LTP) shortly after the departure from the thermally pulsing AGB. To this end, we compute the complete evolution of an initially star all the way from the zero-age main sequence to the white dwarf stage. We find that most of the original H-rich material of the post-AGB remnant is burnt during the post-LTP evolution, with the result that, at entering its white dwarf cooling track, the remaining H envelope becomes in agreement with asteroseismological inferences for some ZZ Ceti stars.
Key concepts: White dwarf, Physics, Astrophysics, Stars, Stellar evolution, Envelope (radar), White (mutation), Common envelope