Long-term Photometric Behavior of Outbursting AM CVn Systems
arXiv:1410.6987 · doi:10.1093/mnras/stu2105
Abstract
The AM CVn systems are a class of He-rich, post-period minimum, semi-detached, ultra-compact binaries. Their long-term light curves have been poorly understood due to the few systems known and the long (hundreds of days) recurrence times between outbursts. We present combined photometric light curves from the LINEAR, CRTS, and PTF synoptic surveys to study the photometric variability of these systems over an almost 10 yr period. These light curves provide a much clearer picture of the outburst phenomena that these systems undergo. We characterize the photometric behavior of most known outbursting AM CVn systems and establish a relation between their outburst properties and the systems' orbital periods. We also explore why some systems have only shown a single outburst so far and expand the previously accepted phenomenological states of AM CVn systems. We conclude that the outbursts of these systems show evolution with respect to the orbital period, which can likely be attributed to the decreasing mass transfer rate with increasing period. Finally, we consider the number of AM CVn systems that should be present in modeled synoptic surveys.
22 pages, 13 figures, accepted to MNRAS
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Cited by in corpus (23)
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- Accretion Flows in Nonmagnetic White Dwarf Binaries as Observed in X-rays
- Exploratory Spectroscopy of Magnetic Cataclysmic Variables Candidates and Other Variable Objects
- Evidence that short period AM CVn systems are diverse in outburst behaviour
- Discovery of a high state AM CVn binary in the Galactic Bulge Survey
- TACOS: TESS AM~CVn Outbursts Survey
- Compact white-dwarf binaries in the combined SRG/eROSITA/SDSS eFEDS survey
- Orbital decay in an accreting and eclipsing 13.7 minute orbital period binary with a luminous donor
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- A Catalogue of Ultracompact Mass-Transferring White Dwarf Binaries
- NSV 1440: First WZ Sge-type Object in AM CVn stars and candidates
- Orbital Period Increase in ES Ceti
- New Candidates for AM Canum Venaticorum Stars among ASAS-SN Transients
- ASASSN-14cc: Likely Helium Analog of RZ Leonis Minoris
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- The double helium-white dwarf channel for the formation of AM CVn binaries
- Four new eclipsing accreting ultracompact white dwarf binaries found with the Zwicky Transient Facility
- Machine Learning applications for Cataclysmic Variable discovery in the ZTF alert stream
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- eROSITA-selection of new period-bounce Cataclysmic Variables: First follow-up confirmation using TESS and SDSS