Radio and optical observations of the possible AE Aqr twin, LAMOST J024048.51+195226.9
arXiv:2102.08800 · doi:10.1093/mnras/stab498
Abstract
Thorstensen (2020) recently argued that the cataclysmic variable (CV) LAMOST J024048.51+195226.9 may be a twin to the unique magnetic propeller system AE Aqr. If this is the case, two predictions are that it should display a short period white dwarf spin modulation, and that it should be a bright radio source. We obtained follow-up optical and radio observations of this CV, in order to see if this holds true. Our optical high-speed photometry does not reveal a white dwarf spin signal, but lacks the sensitivity to detect a modulation similar to the 33-s spin signal seen in AE Aqr. We detect the source in the radio, and measure a radio luminosity similar to that of AE Aqr and close to the highest so far reported for a CV. We also find good evidence for radio variability on a time scale of tens of minutes. Optical polarimetric observations produce no detection of linear or circular polarization. While we are not able to provide compelling evidence, our observations are all consistent with this object being a propeller system.
MNRAS, accepted
References in corpus (11)
- The Gaia mission
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- The Catalina Surveys Periodic Variable Star Catalog
- A radio pulsing white dwarf binary star
- A transient radio jet in an erupting dwarf nova
- Dwarf nova-type cataclysmic variable stars are significant radio emitters
- Circular polarization survey of intermediate polars I. Northern targets in the range 17h<R.A.<23h
- CTCV J2056-3014: An X-ray-faint Intermediate Polar Harboring An Extremely Fast-spinning White Dwarf
- Follow-up Studies of Five Cataclysmic Variable Candidates Discovered by LAMOST
- A MeerKAT Survey of Nearby Novalike Cataclysmic Variables
- A Flare of AE Aquarii Observed with XMM-Newton