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The cataclysmic variable SDSSJ 015543.40+002807.2 is confirmed to be a magnetic system of the AM Herculis type. With an orbital period of 87.13 min, it is also the shortest-period eclipsing Polar known. Monitoring with XMM-Newton finds a…

We report the discovery of ZTF J2243+5242, an eclipsing double white dwarf binary with an orbital period of just $8.8$ minutes, the second known eclipsing binary with an orbital period less than ten minutes. The system likely consists of…

We present the results of optical photometry of the recurrent nova CI Aql in later phase of the outburst which occurred in 2000. Our observation revealed that the object reached the quiescent level between 2001 December and 2002 April and…

Astrophysics · Physics 2009-11-07 Katsura Matsumoto , Ryoko Ishioka , Makoto Uemura , Taichi Kato , Tetsuya Kawabata

We present new eclipse observations of the polar (i.e. semi-detached magnetic white dwarf + M-dwarf binary) HU Aqr, and mid-egress times for each eclipse, which continue to be observed increasingly early. Recent eclipses occurred more than…

Solar and Stellar Astrophysics · Physics 2015-06-22 M. Bours , T. Marsh , E. Breedt , C. Copperwheat , V. Dhillon , A. Leckngam , S. Littlefair , S. Parsons , A. Prasit

Polarimetry of IGR J1401-4306, a long period (12.7 hours), eclipsing intermediate polar and remnant of Nova Scorpii 1437 A.D., reveals periodic variations of optical circular polarization, confirming the system as the longest period…

High Energy Astrophysical Phenomena · Physics 2017-12-06 Stephen B. Potter , David A. H. Buckley

Accreting magnetic white dwarfs offer an opportunity to understand the interplay between spin-up and spin-down torques in binary systems. Monitoring of the white dwarf spin may reveal whether the white dwarf spin is currently in a state of…

The pulsating hydrogen atmosphere white dwarf star G 117-B15A has been observed since 1974. Its main pulsation period at 215.19738823(63) s, observed in optical light curves, varies by only (5.12+/-0.82)x10^{-15} s/s and shows no glitches,…

We present time-series CCD photometry in the $BVRI$ passbands of the recently identified symbiotic nova V1835 Aquilae (NSV 11749) over an interval of 5.1 years with 7-14 day cadence, observed during its quiescence. We find slow light…

We report the first result from our survey of rapid variability in symbiotic binaries: the discovery of a persistent oscillation at P=1682.6 +- 0.6 s in the optical emission from the prototype symbiotic, Z Andromedae. The oscillation was…

Astrophysics · Physics 2009-10-31 J. L. Sokoloski , Lars Bildsten

After its discovery in 2016, the white dwarf binary AR Scorpii (AR Sco) remained for several years the only white dwarf system to show pulsed radio emission associated with a fast-spinning white dwarf. The evolutionary origin and the…

Fast novae are primarily located within the plane of the Galaxy, slow novae are found within its bulge. Because of high interstellar extinction along the line of sight many novae lying close to the plane are missed and only the brightest…

Solar and Stellar Astrophysics · Physics 2015-05-27 R. Hounsell , M. J. Darnley , M. F. Bode , D. J. Harman , L. A. Helton , G. J. Schwarz

AQ Col (EC 05217-3914) is one of the first detected pulsating subdwarf B (sdB) stars and has been considered to be a single star. Photometric monitoring of AQ Col reveals a pulsation timing variation with a period of 486 days, interpreted…

Solar and Stellar Astrophysics · Physics 2022-02-16 T. Otani , A. E. Lynas-Gray , D. Kilkenny , C. Koen , T. von Hippel , M. Uzundag , M. Vuckovic , C. M. Pennock , R. Silvotti

AE Aqr was until recently the only known magnetic cataclysmic variable (MCV) containing a rapidly spinning (33.08 s) white dwarf (WD). Its radio emission is believed to be a superposition of synchrotron emitting plasmoids, because it has a…

Solar and Stellar Astrophysics · Physics 2022-01-19 Paul E. Barrett

We present time-resolved photometry of V1494 Aql (Nova Aql 1999 No. 2: http://www.kusastro.kyoto-u.ac.jp/vsnet/Novae/v1494aql.html) between 2001 November and 2003 June. The object is confirmed to be an eclipsing nova with a period of…

Astrophysics · Physics 2015-06-24 T. Kato , R. Ishioka , M. Uemura , D. R. Starkey , T. Krajci

The recently discovered system J0651 is the tightest known detached white dwarf (WD) binary. Since it has not yet initiated Roche-lobe overflow, it provides a relatively clean environment for testing our understanding of tidal interactions.…

Solar and Stellar Astrophysics · Physics 2015-05-30 Anthony L. Piro

A distinguishing trait of the three known Galactic recurrent novae with the shortest orbital periods, T Pyx, IM Nor, and CI Aql, is that their optical decline time-scales are significantly longer than those of the other recurrent systems.…

Solar and Stellar Astrophysics · Physics 2015-06-24 Andrea Caleo , Steven N. Shore

Optical time series photometry of the short period magnetic white dwarf + probable brown dwarf binary SDSS 121209.31+013627.7 reveals pulse-like variability in all bands from i' to u', peaking at u'. These modulations are most likely due to…

We present spectroscopic and photometric observations of the eclipsing binary V32 located in the central field of the globular cluster NGC 6397. The variable is a single-line spectroscopic binary with an orbital period of 9.8783d and a…

Astrophysics · Physics 2009-11-13 J. Kaluzny , I. B. Thompson , S. M. Rucinski , W. Krzeminski

For decades, AE Aquarii (AE Aqr) has been the only cataclysmic variable star known to contain a magnetic propeller: a persistent outflow whose expulsion from the binary is powered by the spin-down of the rapidly rotating, magnetized white…

Solar and Stellar Astrophysics · Physics 2021-08-18 Peter Garnavich , Colin Littlefield , R. M. Wagner , Jan van Roestel , Amruta D. Jaodand , Paula Szkody , John R. Thorstensen

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…