A Roche Lobe-filling hot Subdwarf and White Dwarf Binary: possible detection of an ejected common envelope
Jiangdan Li, Christopher A. Onken, Christian Wolf, P\'eter N\'emeth,, Mike Bessell, Zhenwei Li, Xiaobin Zhang, Jiao Li, Luqian Wang, Lifang Li,, Yangping Luo, Hailiang Chen, Kaifan Ji, Xuefei Chen, and Zhanwen Han

TL;DR
This paper reports the discovery of a rare hot subdwarf and white dwarf binary system, likely formed through a common envelope ejection, with detailed spectroscopic and photometric analysis revealing its properties and evolutionary implications.
Contribution
It presents the third known binary of this type, providing detailed measurements and proposing a formation scenario involving common envelope ejection and future evolution into an R CrB star.
Findings
Binary consists of a hot subdwarf O star and a white dwarf with a 3.495-hour orbit.
Spectroscopic analysis yields the sdO star's temperature, gravity, and mass.
The system likely originated from a common envelope ejection event.
Abstract
Binaries consisting of a hot subdwarf star and an accreting white dwarf (WD) are sources of gravitational wave radiation at low frequencies and possible progenitors of type Ia supernovae if the WD mass is large enough. Here, we report the discovery of the third binary known of this kind: it consists of a hot subdwarf O (sdO) star and a WD with an orbital period of 3.495 hours and an orbital shrinkage of 0.1 s in 6 yr. The sdO star overfills its Roche lobe and likely transfers mass to the WD via an accretion disk. From spectroscopy, we obtain an effective temperature of K and a surface gravity of for the sdO star. From the light curve analysis, we obtain a sdO mass of and a mass ratio of . Also, we estimate that the disk has a radius…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Pulsars and Gravitational Waves Research · Stellar, planetary, and galactic studies
