Phase-resolved spectroscopy of four AM CVn systems obtained with the William Herschel Telescope and the Gran Telescopio de Canarias is presented. SDSS J120841.96+355025.2 was found to have an orbital period of 52.96 ± 0.40 min and shows the presence of a second bright spot in the accretion disc. The average spectrum contains strong Mg i and Si i/ii absorption lines most likely originating in the atmosphere of the accreting white dwarf. SDSS J012940.05+384210.4 has an orbital period of 37.555 ± 0.003 min. The average spectrum shows the Stark-broadened absorption lines of the DB white dwarf accretor. The orbital period is close to the previously reported superhump period of 37.9 min. Combined, this results in a period excess ϵ = 0.0092 ± 0.00...
The AM CVn systems are a class of He-rich, post-period minimum, semi-detached, ultra-compact binarie...
We present results of our analysis of up to 15 yr of photometric data from eight AM CVn systems with...
Contains fulltext : 32954.pdf ( ) (Open Access)We present high time-resolution spe...
Phase-resolved spectroscopy of four AM CVn systems obtained with the William Herschel Telescope and ...
Phase-resolved spectroscopy of four AMCVn systems obtained with the William Herschel Telescope and t...
The AM Canum Venaticorum (AM CVn) binaries are a rare group of ultrashort period, mass-transferring ...
We present three new candidate AM CVn binaries, and one confirmed new system, from a spectroscopic s...
Kepler satellite photometry and phase-resolved spectroscopy of the ultracompact AM CVn type binary S...
We present three new candidate AM CVn binaries, and one confirmed new system, from a spectroscopic s...
We present time-resolved optical spectroscopy of the dwarf nova CSS100603:112253−111037. Its optical...
Ultracompact accreting binary systems each consist of a stellar remnant accreting helium-enriched ma...
We report on PTF1 J191905.19+481506.2, a newly discovered, partially eclipsing, outbursting AM CVn s...
We report on the results from a five-night campaign of high-speed spectroscopy of the 17-minute bina...
The AM CVn systems are a class of He-rich, post-period minimum, semidetached, ultracompact binaries....
AM CVn systems are ultra-compact, hydrogen-depleted and helium-rich, accreting binaries with degener...
The AM CVn systems are a class of He-rich, post-period minimum, semi-detached, ultra-compact binarie...
We present results of our analysis of up to 15 yr of photometric data from eight AM CVn systems with...
Contains fulltext : 32954.pdf ( ) (Open Access)We present high time-resolution spe...
Phase-resolved spectroscopy of four AM CVn systems obtained with the William Herschel Telescope and ...
Phase-resolved spectroscopy of four AMCVn systems obtained with the William Herschel Telescope and t...
The AM Canum Venaticorum (AM CVn) binaries are a rare group of ultrashort period, mass-transferring ...
We present three new candidate AM CVn binaries, and one confirmed new system, from a spectroscopic s...
Kepler satellite photometry and phase-resolved spectroscopy of the ultracompact AM CVn type binary S...
We present three new candidate AM CVn binaries, and one confirmed new system, from a spectroscopic s...
We present time-resolved optical spectroscopy of the dwarf nova CSS100603:112253−111037. Its optical...
Ultracompact accreting binary systems each consist of a stellar remnant accreting helium-enriched ma...
We report on PTF1 J191905.19+481506.2, a newly discovered, partially eclipsing, outbursting AM CVn s...
We report on the results from a five-night campaign of high-speed spectroscopy of the 17-minute bina...
The AM CVn systems are a class of He-rich, post-period minimum, semidetached, ultracompact binaries....
AM CVn systems are ultra-compact, hydrogen-depleted and helium-rich, accreting binaries with degener...
The AM CVn systems are a class of He-rich, post-period minimum, semi-detached, ultra-compact binarie...
We present results of our analysis of up to 15 yr of photometric data from eight AM CVn systems with...
Contains fulltext : 32954.pdf ( ) (Open Access)We present high time-resolution spe...