English

OGLE-BLG504.12.201843: A possible extreme dwarf nova

Solar and Stellar Astrophysics 2022-10-26 v1

Abstract

We present the analysis of existing optical photometry and new optical spectroscopy of the candidate cataclysmic variable star OGLE-BLG504.12.201843. As was shown previously, this object has an orbital period of 0.523419 days and exhibits year-long outbursts with a mean period of 973 days. Using digitized photographic archives, we show that the earliest recorded outburst occurred in 1910. We propose that this object is a U Gem-type dwarf nova with extreme properties. The orbital variability of the system in outburst shows clear signs of an accretion disc, from which the outburst likely originates. During quiescence, the object slowly brightens by up to 0.750.75 mag in the II band over 600 days before the outburst and exhibits small flares with amplitude 0.2\lesssim 0.2 mag in the II band. We interpret the gradual brightening as an increase in the luminosity and temperature of the accretion disc, which is theoretically predicted but only rarely seen in DNe. The origin of small flares remains unexplained. The spectra shows Balmer absorption lines both in quiescence and outburst, which can be associated with a bright secondary star or a cold accretion disc. During outbursts, emission lines with FWHM of about 450 km s1^{-1} appear, but they lack typical double-peaked profiles. We suggest that either these lines originate in the disc winds or the orbital inclination is low, the latter being consistent with constrains obtained from the orbital variability of the system. Due to its extreme properties and peculiarities, OGLE-BLG504.12.201843 is an excellent object for further follow-up studies.

Keywords

Cite

@article{arxiv.2210.01141,
  title  = {OGLE-BLG504.12.201843: A possible extreme dwarf nova},
  author = {Camille Landri and Ondřej Pejcha and Michał Pawlak and Andrzej Udalski and Jose L. Prieto and Manuel Barrientos and Jay Strader and Subo Dong},
  journal= {arXiv preprint arXiv:2210.01141},
  year   = {2022}
}

Comments

Accepted for publication in MNRAS, 10 pages (2 pages of Appendix); 9 Figures; 2 Tables

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