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相关论文: Ultracompact AM CVn Binaries from the Sloan Digita…

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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…

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…

太阳与恒星天体物理 · 物理学 2014-11-20 Arne Rau , Gijs H. A. Roelofs , Paul J. Groot , Tom R. Marsh , Gijs Nelemans , Danny Steeghs , Mansi M. Kasliwal

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…

太阳与恒星天体物理 · 物理学 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

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.…

AM CVn systems are ultra-compact binaries where a white dwarf accretes from a helium-rich degenerate or semi-degenerate donor. Some AM CVn systems will be among the loudest sources of gravitational waves for the upcoming Laser…

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…

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…

太阳与恒星天体物理 · 物理学 2015-06-17 P. J. Carter , D. Steeghs , T. R. Marsh , T. Kupfer , C. M. Copperwheat , P. J. Groot , G. Nelemans

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 describe a spectroscopic survey designed to uncover an estimated ~40 AM CVn stars hiding in the photometric database of the Sloan Digital Sky Survey (SDSS). We have constructed a relatively small sample of about 1500 candidates based on…

天体物理学 · 物理学 2009-11-13 G. H. A. Roelofs , P. J. Groot , D. Steeghs , A. Rau , E. de Groot , T. R. Marsh , G. Nelemans , J. Liebert , P. Woudt

We present the latest results from a spectroscopic survey designed to uncover the hidden population of AM Canum Venaticorum (AM CVn) binaries in the photometric database of the Sloan Digital Sky Survey (SDSS). We selected ~2000 candidates…

太阳与恒星天体物理 · 物理学 2015-06-12 P. J. Carter , T. R. Marsh , D. Steeghs , P. J. Groot , G. Nelemans , D. Levitan , A. Rau , C. M. Copperwheat , T. Kupfer , G. H. A. Roelofs

We present the results of a systematic study of cataclysmic variables (CVs) and related systems, combining detailed binary-population synthesis (BPS) models with a grid of 120 binary evolution sequences calculated with a Henyey-type stellar…

天体物理学 · 物理学 2007-05-23 Ph. Podsiadlowski , Z. Han , S. Rappaport

AM CVn-type systems are ultra-compact, hydrogen-deficient accreting binaries with degenerate or semi-degenerate donors. The evolutionary history of these systems can be explored by constraining the properties of their donor stars. We…

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…

天体物理学 · 物理学 2019-08-14 Richard A. Wade , Michael Eracleous , Helene M. L. G. Flohic

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…

天体物理学 · 物理学 2009-11-13 G. H. A. Roelofs , P. J. Groot , D. Steeghs , T. R. Marsh , G. Nelemans

AM CVn-type systems are ultracompact, helium-accreting binary systems which are evolutionarily linked to the progenitors of thermonuclear supernovae and are expected to be strong Galactic sources of gravitational waves detectable to…

The commissioning year of the Sloan Digital Sky Survey has demonstrated that many cataclysmic variables have been missed in previous surveys with brighter limits. We report the identification of 22 cataclysmic variables, of which 19 are new…

AM CVn binaries are hydrogen deficient compact binaries with an orbital period in the 5-65 min range and are predicted to be strong sources of persistent gravitational wave radiation. Using Gaia Data Release 2, we present the parallaxes and…

太阳与恒星天体物理 · 物理学 2018-12-12 G. Ramsay , M. J. Green , T. R. Marsh , T. Kupfer , E. Breedt , V. Korol , P. J. Groot , C. Knigge , G. Nelemans , D. Steeghs , P. Woudt , A. Aungwerojwit

We discuss the properties of 137 cataclysmic variables (CVs) which are included in the Sloan Digital Sky Survey (SDSS) spectroscopic data base, and for which accurate orbital periods have been measured. 92 of these systems are new…

We present time-resolved optical spectroscopy of the dwarf nova CSS100603:112253-111037. Its optical spectrum is rich in helium, with broad, double-peaked emission lines produced in an accretion disc. We measure a line flux ratio…

太阳与恒星天体物理 · 物理学 2015-06-05 E. Breedt , B. T. Gaensicke , T. R. Marsh , D. Steeghs , A. J. Drake , C. M. Copperwheat

Context. AM CVn binaries are potential progenitors of thermonuclear supernovae and strong sources of persistent gravitational wave radiation. For a long time, it has been believed that these systems cannot descend from cataclysmic variables…

太阳与恒星天体物理 · 物理学 2023-10-04 Diogo Belloni , Matthias R. Schreiber
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