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Related papers: A Catalogue of Ultracompact Mass-Transferring Whit…

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Context. Accreting ultracompact binaries contain a white dwarf that is accreting from a degenerate object and have orbital periods shorter than 65 minutes. Aims. The aims of this letter are to report the discovery and the orbital period of…

AM CVn stars are ultra-compact semi-detached binaries consisting of a white dwarf primary and a hydrogen-depleted secondary. In this paper we present spectroscopic and photometric results of 15 transient sources pre-classified as AM CVn…

We present a binary evolution study of cataclysmic variables (CVs) and related systems with white dwarf accretors, including for example, AM CVn systems, classical novae, supersoft X-ray sources, and systems with giant donor stars. Our…

Solar and Stellar Astrophysics · Physics 2016-12-14 B. Kalomeni , L. Nelson , S. Rappaport , M. Molnar , J. Quintin , K. Yakut

Ultracompact accreting binary systems each consist of a stellar remnant accreting helium-enriched material from a compact donor star. Such binaries include two related sub-classes, AM CVn-type binaries and helium cataclysmic variables, in…

AM CVn systems are ultra-compact, helium-rich, accreting binaries with degenerate or semi-degenerate donors. We report the discovery of five new eclipsing AM CVn systems with orbital periods of 61.5, 55.5, 53.3, 37.4, and 35.4 minutes.…

We present the discovery of 15 extremely low mass (5 < log{g} < 7) white dwarf candidates, 9 of which are in ultra-compact double-degenerate binaries. Our targeted ELM Survey sample now includes 76 binaries. The sample has a lognormal…

Solar and Stellar Astrophysics · Physics 2016-04-20 Warren R. Brown , A. Gianninas , Mukremin Kilic , Scott J. Kenyon , Carlos Allende Prieto

AM CVn systems are a rare type of accreting binary that consists of a white dwarf and a helium-rich, degenerate donor star. Using the Zwicky Transient Facility (ZTF), we searched for new AM CVn systems by focusing on blue, outbursting…

AM CVn systems are a rare (about a dozen previously known) class of cataclysmic variables, arguably encompassing the shortest orbital periods (down to about 10 minutes) of any known binaries. Both binary components are thought to be…

We present Chandra and Swift X-ray observations of four extremely low-mass (ELM) white dwarfs with massive companions. We place stringent limits on X-ray emission from all four systems, indicating that neutron star companions are extremely…

Solar and Stellar Astrophysics · Physics 2016-07-27 Mukremin Kilic , Warren R. Brown , Craig O. Heinke , A. Gianninas , P. Benni , M. A. Agueros

Binary systems consisting of a white dwarf and a main-sequence companion with orbital periods up to $\approx 100$ d are often thought to be formed through common envelope evolution which is still poorly understood. To provide new…

Solar and Stellar Astrophysics · Physics 2022-03-18 F. Lagos , M. R. Schreiber , S. G. Parsons , O. Toloza , B. T. Gänsicke , M. S. Hernandez , L. Schmidtobreick , D. Belloni

EL CVn-type systems represent a rare evolutionary stage in binary star evolution, providing ideal laboratories for investigating stable mass transfer processes and the formation of extremely low-mass white dwarfs (ELM WDs). The Transiting…

Solar and Stellar Astrophysics · Physics 2024-12-13 Jianping Xiong , Zhenwei Li , Jiao Li , Xiaobin Zhang , Xiaodian Chen , Kaifan Ji , Zhanwen Han , Xuefei Chen

The AM Canum Venaticorum (AM CVn) binaries are a rare group of ultra-short period, mass-transferring white dwarf binaries, some of which may be Type Ia supernova progenitors. More than a third of the total known population of AM CVn…

Solar and Stellar Astrophysics · Physics 2015-06-18 P. J. Carter , B. T. Gänsicke , D. Steeghs , T. R. Marsh , E. Breedt , T. Kupfer , N. P. Gentile Fusillo , P. J. Groot , G. Nelemans

We present a catalogue containing 839 candidate post common envelope systems. Common envelope evolution is very important in stellar astrophysics, particularly in the context of very compact and short-period binaries, including cataclysmic…

Solar and Stellar Astrophysics · Physics 2021-10-27 Matthias U. Kruckow , Patrick G. Neunteufel , Rosanne Di Stefano , Yan Gao , Chiaki Kobayashi

AM CVn systems are a select group of ultracompact binaries with the shortest orbital periods of any known binary subclass; mass-transfer is likely from a low-mass (partially-)degenerate secondary onto a white dwarf primary, driven by…

AM CVn systems are interacting binaries similar to cataclysmic variables (CVs), but more compact with orbital periods of less than 80 minutes. The primary is a white dwarf, whereas the nature of the secondary is not completely clear, yet.…

Solar and Stellar Astrophysics · Physics 2009-01-20 D. J. Kusterer , T. Nagel , K. Werner

Virtually all binaries consisting of a white dwarf with a non-degenerate companion can be classified as either close post-interaction systems (with orbital periods of a few days or less), or wide systems (with periods longer than decades),…

Galactic short-period close white dwarf binaries (CWDBs) are important objects for space-borne gravitational-wave (GW) detectors in the millihertz frequency bands. Due to the intrinsically low luminosity, only about 25 identified CWDBs are…

Solar and Stellar Astrophysics · Physics 2023-02-07 Liangliang Ren , Chengyuan Li , Bo Ma , Sihao Cheng , Shun-Jia Huang , Baitian Tang , Yi-ming Hu

The new-found prevalence of extremely low mass (ELM, Mhe<0.2 Msun) helium white dwarfs (WDs) in tight binaries with more massive WDs has raised our interest in understanding the nature of their mass transfer. Possessing small (Menv~1e-3…

Solar and Stellar Astrophysics · Physics 2015-06-11 David L. Kaplan , Lars Bildsten , Justin D. R. Steinfadt

We analyze radial velocity observations of the 12 extremely low-mass <0.25 Msol white dwarfs (WDs) in the MMT Hypervelocity Star Survey. Eleven of the 12 WDs are binaries with orbital periods shorter than 14 hours; the one non-variable WD…

Astrophysics of Galaxies · Physics 2010-11-16 Warren R. Brown , Mukremin Kilic , Carlos Allende Prieto , Scott J. Kenyon
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