A Step towards Unveiling the Nature of Three Cataclysmic Variables: LS Cam, V902 Mon, and SWIFT J0746.3-1608
arXiv:2203.17088 · doi:10.1093/mnras/stac844
Abstract
We have carried out detailed time-resolved timing analyses of three cataclysmic variables (CVs) namely LS Cam, V902 Mon, and SWIFT J0746.3-1608, using the long-baseline, high-cadence optical photometric data from the Transiting Exoplanet Survey Satellite (TESS). Our analysis of LS Cam observations hints the presence of a superorbital period of 4.0250.007 d along with negative and positive superhump periods of 3.30 h and 3.70 h, respectively. These results can be explained as an interaction of nodal and apsidal precession of the accretion disc with orbital motion. For the other two sources, V902 Mon and SWIFT J0746.3-1608, we have found evidence of a beat period of 2387.00.6 s and 2409.50.7 s, respectively, which were not found in earlier studies. Our results presented in this study indicate the change in the accretion mode during the entire observing period for both sources. For V902 Mon, an apparent orbital period derivative of (6.09 0.60) was also found. Moreover, the second harmonic of orbital frequency dominates the power spectrum of SWIFT J0746.3-1608, suggestive of ellipsoidal modulation of the secondary star. Present analyses suggest that LS Cam could be a superhumping CV whereas V902 Mon and SWIFT J0746.3-1608 are likely to be variable disc-overflow accreting intermediate polars.
14 pages, 10 figures, 5 tables (Accepted for publication in MNRAS)
References in corpus (8)
- The Transiting Exoplanet Survey Satellite
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- Achieving better than 1 minute accuracy in the Heliocentric and Barycentric Julian Dates
- Newly Discovered Cataclysmic Variables from the INT/WFC Photometric H alpha Survey of the Northern Galactic Plane
- Broad-band characteristics of seven new hard X-ray selected cataclysmic variables
- Quasi-periodic oscillations in the TESS light curve of TX Col, a diskless intermediate polar on the precipice of forming an accretion disk
- Exploring the tilted accretion disc of AQ Men with TESS
- The true nature of Swift J0746.3-1608: a possible Intermediate Polar showing accretion state changes