Two new young, wide magnetic + non-magnetic double-degenerate binary systems
Paul D. Dobbie, Richard Baxter, Baybars Kulebi, Quentin A. Parker,, Detlev Koester, Stefan Jordan, Nicolas Lodieu, Fabian Euchner

TL;DR
This paper reports the discovery of two rare wide binary systems each containing a magnetic and a non-magnetic white dwarf, providing insights into their evolution, progenitor masses, and cooling times.
Contribution
It presents the first identification of two wide double-degenerate binaries with magnetic and non-magnetic components, offering new data on their properties and evolution.
Findings
Both systems contain a magnetic and a non-magnetic white dwarf.
The white dwarfs have larger masses than typical field white dwarfs.
Cooling times suggest possible early progenitor masses > 2 solar masses.
Abstract
Abridged: We report the discovery of two, new, rare, wide, double-degenerate binaries that each contain a magnetic and a non-magnetic star. The components of SDSSJ092646.88+132134.5 + J092647.00+132138.4 and SDSSJ150746.48+521002.1 + J150746.80+520958.0 have angular separations of only 4.6 arcsec (a~650AU) and 5.1 arcsec (a~750AU), respectively. They also appear to share common proper motions. Follow-up optical spectroscopy reveals each system to consist of a DA and a H-rich high-field magnetic white dwarf (HFMWD). Our measurements of the effective temperatures and the surface gravities of the DA components reveal both to have larger masses than are typical of field white dwarfs. By assuming that these degenerates have evolved essentially as single stars, due to their wide orbital separations, we use them to place limits on the total ages of our stellar systems. These argue that in each…
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