English

Optical Observations of the High Mass X-ray Binary MAXI J0709$-$159/LY CMa

High Energy Astrophysical Phenomena 2025-03-28 v1 Solar and Stellar Astrophysics

Abstract

We report on the optical spectroscopic monitoring of the X-ray transient MAXI J0709-159 (identified as the Be star LY CMa) performed for about 1.5 months after the X-ray detection with MAXI. The observed spectrum showed a double-peaked Hα\alpha line with a peak-to-peak separation of 230\sim 230 km s1^{-1}, suggestive of the Be disk origin. We also detected a broad wing of the Hα\alpha line with a line-of-sight velocity of 900\gtrsim 900 km s1^{-1}, which could be explained by the accretion disk of the compact object or a stellar wind from the Be star. Initially the Hα\alpha line showed an asymmetric profile with an enhanced blue peak, and then the blue peak decreased in \sim 3 weeks to a similar strength to the red peak. We suggest that the evolution of the blue peak is associated with the X-ray activity and generated by the turbulence of the Be disk due to the passage of the compact object. We also investigated flux variation using the archival TESS data and found quasi-periodic variations with frequencies of 1\sim 1 and 2\sim 2 day1^{-1}, which were likely caused by the pulsation of the B star. The overall variability properties on timescales of \sim day were similar to those in Be X-ray binaries, rather than supergiant X-ray binaries.

Keywords

Cite

@article{arxiv.2503.21118,
  title  = {Optical Observations of the High Mass X-ray Binary MAXI J0709$-$159/LY CMa},
  author = {Megumi Shidatsu and Nobuyuki Kawai and Hiroyuki Maehara and Emi Goto and Sota Urabe and Wataru Iwakiri and Yohko Tsuboi and Noboru Nemoto and Sakura Nawa and Mutsumi Sugizaki and Motoki Nakajima and Masafumi Niwano and Ryohei Hosokawa and Marie Sakamoto and Yoshiki Matsuoka},
  journal= {arXiv preprint arXiv:2503.21118},
  year   = {2025}
}

Comments

12 pages, 9 figures, Accepted for publication in PASJ