English

MASTER OT J030227.28+191754.5: an unprecedentedly energetic dwarf nova outburst

Solar and Stellar Astrophysics 2024-08-28 v1 High Energy Astrophysical Phenomena

Abstract

We present a detailed study of the MASTER OT J030227.28+191754.5 outburst in 2021-2022, reaching an amplitude of 10.2 mag and a duration of 60 d. The detections of (1) the double-peaked optical emission lines, and (2) the early and ordinary superhumps, established that MASTER OT J030227.28+191754.5 is an extremely energetic WZ Sge-type dwarf nova (DN). Based on the superhump observations, we obtained its orbital period and mass ratio as 0.05986(1) d and 0.063(1), respectively. These are within a typical range of low-mass-ratio DNe. According to the binary parameters derived based on the thermal-tidal instability model, our analyses showed that (1) the standard disk model requires an accretion rate \simeq 1020^{20} g s1^{-1} to explain its peak optical luminosity and (2) large mass was stored in the disk at the outburst onset. These cannot be explained solely by the impact of its massive (\gtrsim 1.15 M_\odot) primary white dwarf implied by Kimura et al. (2023). Instead, we propose that the probable origin of this enormously energetic DN outburst is the even lower quiescence viscosity than other WZ Sge-type DNe. This discussion is qualitatively valid for most possible binary parameter spaces unless the inclination is low (40\lesssim 40^\circ) enough for the disk to be bright explaining the outburst amplitude. Such low inclinations, however, would not allow detectable amplitude of early superhumps in the current thermal-tidal instability model. The optical spectra at outburst maximum showed the strong emission lines of Balmer, He I, and He II series whose core is narrower than 800\sim 800 km s1^{-1}. Considering its binary parameters, a Keplerian disk cannot explain this narrow component, but the presumable origin is disk winds.

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Cite

@article{arxiv.2408.13783,
  title  = {MASTER OT J030227.28+191754.5: an unprecedentedly energetic dwarf nova outburst},
  author = {Yusuke Tampo and Taichi Kato and Keisuke Isogai and Mariko Kimura and Naoto Kojiguchi and Daisaku Nogami and Junpei Ito and Masaaki Shibata and Masayuki Yamanaka and Kenta Taguchi and Hiroyuki Maehara and Hiroshi Itoh and Katsura Matsumoto and Momoka Nakagawa and Yukitaka Nishida and Shawn Dvorak and Katsuhiro L. Murata and Ryohei Hosokawa and Yuri Imai and Naohiro Ito and Masafumi Niwano and Shota Sato and Ryotaro Noto and Ryodai Yamaguchi and Malte Schramm and Yumiko Oasa and Takahiro Kanai and Yu Sasaki and Tamás Tordai and Tonny Vanmunster and Seiichiro Kiyota and Nataly Katysheva and Sergey Yu. Shugarov and Alexandra M. Zubareva and Sergei Antipin and Natalia Ikonnikova and Alexandr Belinski and Pavol A. Dubovsky and Tomáš Medulka and Jun Takahashi and Masaki Takayama and Tomohito Ohshima and Tomoki Saito and Miyako Tozuka and Shigeyuki Sako and Masaomi Tanaka and Nozomu Tominaga and Takashi Horiuchi and Hidekazu Hanayama and Daniel E. Reichart and Vladimir V. Kouprianov and James W. Davidson and Daniel B. Caton and Filipp D. Romanov and David J. Lane and Franz-josef Hambsch and Norio Narita and Akihiko Fukui and Masahiro Ikoma and Motohide Tamura and Koji S. Kawabata and Tatsuya Nakaoka and Ryo Imazawa},
  journal= {arXiv preprint arXiv:2408.13783},
  year   = {2024}
}

Comments

23 pages, 13 figures, 2 tables. Accepted by PASJ. Part of the online supplemental information is included