English

Photometric masses for long period CVs: the case study of CSS131106

Solar and Stellar Astrophysics 2026-03-19 v1

Abstract

We present high-speed photometry of the eclipsing cataclysmic variable CSS131106 J052412+004148. We determine the system parameters by modelling the eclipse lightcurve using the photometric eclipse method, in which the mass ratio is determined from the relative timings of the white dwarf and bright spot eclipses. Despite the blended white dwarf and bright spot ingress, typical of longer period cataclysmic variables, we perform simulations that show we are able to reliably constrain the component masses. We find a mass ratio of q=0.81±0.06q = 0.81 \pm 0.06 and inclination i=78.5±0.7i = 78.5 \pm 0.7 degrees. The white dwarf and donor masses were found to be Mw=0.72±0.04MM_{w} = 0.72 \pm 0.04 \, M_{\odot} and Md=0.58±0.06MM_{d} = 0.58 \pm 0.06 \, M_{\odot} respectively. The white dwarf temperature was estimated to be Teff=18 500±2 000T_{\rm eff} = 18~500 \pm 2~000 K, implying a moderate accretion rate of M˙=3±1×1010M\dot{M} = 3 \pm 1 \times 10^{-10} M_{\odot} yr1^{-1}. The donor in CSS131106 J052412+004148 joins two other long-period cataclysmic variables (IP Peg and HS 0220+0031) in being unusually small for its mass, even when compared to detached M-dwarfs. The donors in all three systems are also unusually cool for their mass. We discuss possible explanations for the small radii and cool temperatures of the donors in these systems, but find no viable explanation for their properties.

Keywords

Cite

@article{arxiv.2603.17568,
  title  = {Photometric masses for long period CVs: the case study of CSS131106},
  author = {M. Das and S. P. Littlefair and S. G. Parsons and V. S. Dhillon and M. J. Dyer and A. J. Brown and J. A. Garbutt and M. J. Green and D. Jarvis and M. R. Kennedy and P. Kerry and E. Pike and D. I. Sahman and Amalie Yates and J. McCormac and N. Castro Segura and J. Munday and I. Pelisoli},
  journal= {arXiv preprint arXiv:2603.17568},
  year   = {2026}
}

Comments

10 pages, 8 figures, accepted for publication in Monthly Notices of the Royal Astronomical Society