English

On accretion in the polar V379 Vir

Solar and Stellar Astrophysics 2025-06-24 v1 High Energy Astrophysical Phenomena

Abstract

Based on optical and infrared survey data spanning 20\approx 20 years of observations, the long-term variability of the polar V379 Vir with a brown dwarf secondary has been studied. By modeling the spectral energy distribution, we constrain the white dwarf's mass to M1=0.61±0.05 MM_1 = 0.61 \pm 0.05~M_{\odot} and its effective temperature to Teff=10930±350 KT_{eff} = 10930 \pm 350~K. Near-infrared photometry yields a donor radius of R2=0.095±0.018RR_2 = 0.095 \pm 0.018 R_{\odot} and temperature Teff=1600±180KT_{eff} = 1600 \pm 180 K. Modeling of the cyclotron emission from the accretion spot, detected with the Spitzer infrared telescope, gives an accretion rate of M˙3×1013M/yr\dot{M} \approx 3 \times 10^{-13} M_{\odot}/yr. This rate is consistent with polars in a low accretion state, but significantly higher than expected from wind-driven mass transfer.

Keywords

Cite

@article{arxiv.2506.17674,
  title  = {On accretion in the polar V379 Vir},
  author = {M. V. Suslikov and A. I. Kolbin and N. V. Borisov},
  journal= {arXiv preprint arXiv:2506.17674},
  year   = {2025}
}