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Population synthesis for double white dwarfs I.Close detached systems

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arxiv astro-ph/0010457 v1 pith:RJN6YHLY submitted 2000-10-23 astro-ph

Population synthesis for double white dwarfs I.Close detached systems

classification astro-ph
keywords dwarfswhitedoublemassratecloseagreementbirth
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We model the population of double white dwarfs in the Galaxy and find a better agreement with observations compared to earlier studies, due to two modifications. The first is the treatment of the first phase of unstable mass transfer and the second the modelling of the cooling of the white dwarfs. A satisfactory agreement with observations of the local sample of white dwarfs is achieved if we assume that the initial binary fraction is ~ 50% and that the lowest mass white dwarfs (M < 0.3 Msun) cool faster than the most recently published cooling models predict. With this model we find a Galactic birth rate of close double white dwarfs of 0.05 yr^{-1}, a birth rate of AM CVn systems of 0.005 yr^{-1}, a merger rate of pairs with a combined mass exceeding the Chandrasekhar limit (which may be progenitors of SNe Ia) of 0.003 yr^{-1} and a formation rate of planetary nebulae of 1 yr^{-1}. We estimate the total number of double white dwarfs in the Galaxy as 2.5 10^8. In an observable sample with a limiting magnitude V_lim = 15 we predict the presence of ~855 white dwarfs of which ~220 are close pairs. Of these 10 are double CO white dwarfs of which one has a combined mass exceeding the Chandrasekhar limit and will merge within a Hubble time.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. V407 Vul: a triple star system with an AM CVn detectable by gravitational wave observatories

    astro-ph.SR 2026-07 accept novelty 7.0

    V407 Vul is a hierarchical triple: a 569-s AM CVn white-dwarf binary bound to a G-type tertiary at ~120 AU, the first 'verification triple' for LISA.

  2. Gravitational Wave Modeling of White-Dwarf--Compact-Object Binaries and Observational Outlook

    astro-ph.HE 2026-07 conditional novelty 6.0

    WD–CO binaries produce unique GW waveforms with a sharp f_max cutoff; LGWA/DECIGO will detect many end stages, while terrestrial detectors will not mistake them for sub-solar compact objects.