Praesepe white dwarfs in Gaia DR2
arXiv:1811.12825 · doi:10.1093/mnras/sty3316
Abstract
We have exploited Gaia Data Release 2 to study white dwarf members of the Praesepe star cluster. We recovered eleven known white dwarf members (all DA spectral type) plus a new cluster WD never identified before. Two of the eleven known DA objects did not satisfy all quality indicators available in the data release. The remaining nine objects of known spectral type have then been employed to determine their masses (average error of 3-5%) and cooling times (average uncertainty of 5-7\%), by fitting cooling tracks to their colour-magnitude diagram. Assuming the recent Gaia Data Release 2 reddening and main sequence turn off age estimates derived from isochrone fitting, we have derived progenitor masses and established the cluster initial-final mass relation. We found consistency with the initial-final mass relation we established for eight Hyades white dwarfs, also employing Gaia data. We have investigated also the effect on the derived initial masses of using self-consistently different sets of stellar models and isochrones for determining cluster age and white dwarf progenitor lifetimes. According to our established Hyades+Praesepe initial-final mass relation, recent sets of stellar evolution calculation that model the full asymptotic giant branch phase do on average underpredict the final white dwarf masses, in the initial mass range covered by the Praesepe and Hyades observed cooling sequence. These results depend crucially on the assumed reddening for the cluster. To this purpose, we have also discussed the case of considering the traditional zero reddening for Praesepe, instead of E(B-V)=0.027 derived from isochrone fitting to the Gaia colour magnitude diagram.
11 pages, 3 tables, 9 figures. Accepted for publication in the MNRAS on 2018, November 30
References in corpus (12)
- Gaia Data Release 2: The astrometric solution
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- Magnetic White Dwarfs
- The White Dwarf Initial-Final Mass Relation for Progenitor Stars From 0.85 to 7.5 M
- The initial-final mass relationship of white dwarfs revisited: effect on the luminosity function and mass distribution
- Binary Star Origin of High Field Magnetic White Dwarfs
- On the interplay between star formation and feedback in galaxy formation simulations
- WIYN Open Cluster Study. LXXV. Testing the Metallicity Dependence of Stellar Lithium Depletion Using Hyades-Aged Clusters. 1. Hyades & Praesepe
- New Praesepe white dwarfs and the initial mass-final mass relation
- High resolution optical spectroscopy of Praesepe white dwarfs
- Initial-Final Mass Relation for 3 to 4 M Progenitors of White Dwarfs from the Single Cluster NGC 2099
- A Gaia DR2 view of white dwarfs in the Hyades
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- The Interferometric Binary Epsilon Cancri in Praesepe: Precise Masses and Age
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