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Related papers: CSS100603:112253-111037: A helium-rich dwarf nova …

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We present time-resolved spectroscopy and photometry of CSS 120422:111127+571239 (= SBS1108+574), a recently discovered SU UMa-type dwarf nova whose 55-minute orbital period is well below the CV period minimum of ~78 minutes. In contrast…

Solar and Stellar Astrophysics · Physics 2015-06-12 C. Littlefield , P. Garnavich , A. Applegate , K. Magno , R. Pogge , J. Irwin , G. H. Marion , J. Vinko , R. P. Kirshner

We present three new candidate AM CVn binaries, plus one confirmed new system, from a spectroscopic survey of color-selected objects from the Sloan Digital Sky Survey. All four systems were found from their helium emission lines in…

Solar and Stellar Astrophysics · Physics 2014-11-20 Arne Rau , Gijs H. A. Roelofs , Paul J. Groot , Tom R. Marsh , Gijs Nelemans , Danny Steeghs , Mansi M. Kasliwal

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…

We present time-resolved spectroscopy and photometry of the dwarf nova SBSS 1108+574, obtained during the 2012 outburst. Its quiescent spectrum is unusually rich in helium, showing broad, double-peaked emission lines from the accretion…

High time resolution spectroscopic observations of the ultra-compact helium dwarf nova 'SN 2003aw' in its quiescent state at V=20.5 reveal its orbital period at 2027.8 +/- 0.5 seconds or 33.80 minutes. Together with the photometric…

Astrophysics · Physics 2009-11-13 G. Roelofs , P. Groot , T. Marsh , D. Steeghs , G. Nelemans

We present the first ever discovery of a short-period and unusually helium-deficient dwarf nova KSP-OT-201701a by the Korea Microlensing Telescope Network Supernova Program. The source shows three superoutbursts, each led by a precursor…

Solar and Stellar Astrophysics · Physics 2022-02-07 Youngdae Lee , Sang Chul Kim , Dae-Sik Moon , Hong Soo Park , Maria R. Drout , Yuan Qi Ni , Hyobin Im

The AM Canum Venaticorum (AM CVn) binaries are a rare group of hydrogen-deficient, ultra-short period, mass-transferring white dwarf binaries, and are possible progenitors of type Ia supernovae. We present time-resolved spectroscopy of the…

Solar and Stellar Astrophysics · Physics 2015-06-17 P. J. Carter , D. Steeghs , T. R. Marsh , T. Kupfer , C. M. Copperwheat , P. J. Groot , G. Nelemans

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 have obtained observations of the ultraviolet spectrum of AM CVn, an ultra-short-period helium cataclysmic variable, using the Space Telescope Imaging Spectrograph (STIS) aboard the Hubble Space Telescope (HST). We obtained data in…

Astrophysics · Physics 2019-08-14 Richard A. Wade , Michael Eracleous , Helene M. L. G. Flohic

We present spectroscopy and time-series photometry of the newly discovered dwarf nova 1RXS J232953.9+062814. Photometry in superoutburst reveals a superhump with a period of 66.06(6) minutes. The low state spectrum shows Balmer and HeI…

We present high time resolution VLT spectroscopy of SDSS J124058.03-015919.2, a new helium-transferring binary star identified in the Sloan Digital Sky Survey. We measure an orbital period of 37.355+/-0.002 minutes, confirming the AM CVn…

Astrophysics · Physics 2007-05-23 G. H. A. Roelofs , P. J. Groot , T. R. Marsh , D. Steeghs , S. C. C. Barros , G. Nelemans

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 report the discovery of five new dwarf novae from the Hamburg Quasar Survey (HQS), and discuss the properties of the sample of dwarf novae in the HQS. The orbital periods of the new dwarf novae are ~105.1 min or ~109.9 min, 114.3+-2.7…

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 multi-wavelength observations of the helium-dominated accreting binary KL Dra which has an orbital period of 25 mins. Our ground-based optical monitoring programme using the Liverpool Telescope has revealed KL Dra to show…

We present high speed photometric observations of 20 faint cataclysmic variables, selected from the Sloan Digital Sky Survey and Catalina catalogues. Measurements are given of 15 new directly measured orbital periods, including four…

Solar and Stellar Astrophysics · Physics 2015-06-03 Patrick A. Woudt , Brian Warner , Deanne de Bude , Sally Macfarlane , Matthew P. E. Schurch , Ewald Zietsman

In over a thousand known cataclysmic variables (CVs), where a white dwarf is accreting from a hydrogen-rich star, only a dozen have orbital periods below 75 minutes. One way to achieve these short periods requires the donor star to have…

AM CVn systems are a rare type of cataclysmic variable star consisting of a w hite dwarf accreting material from a low-mass, hydrogen-poor donor star. These helium-rich systems usually have orbital periods that are less than 65 minutes an d…

High Energy Astrophysical Phenomena · Physics 2023-12-12 Teja Begari , Thomas J. Maccarone

The Sloan Digital Sky Survey has been instrumental in obtaining a homogeneous sample of the rare AM CVn stars: mass-transferring binary white dwarfs. As part of a campaign of spectroscopic follow-up on candidate AM CVn stars from the Sloan…

Astrophysics · Physics 2009-11-13 G. H. A. Roelofs , P. J. Groot , D. Steeghs , T. R. Marsh , G. Nelemans

We present results of our analysis of up to 15 years of photometric data from eight AM CVn systems with orbital periods between 22.5 and 26.8 min. Our data has been collected from the GOTO, ZTF, Pan-STARRS, ASAS-SN and Catalina all-sky…

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