论文标题

Gaia18aen:盖亚发现的第一颗共生星

Gaia18aen: First symbiotic star discovered by Gaia

论文作者

Merc, J., Mikołajewska, J., Gromadzki, M., Gałan, C., Iłkiewicz, K., Skowron, J., Wyrzykowski, Ł., Hodgkin, S. T., Rybicki, K. A., Zieliński, P., Kruszyńska, K., Godunova, V., Simon, A., Reshetnyk, V., Lewis, F., Kolb, U., Morrell, M., Norton, A. J., Awiphan, S., Poshyachinda, S., Reichart, D. E., Greet, M., Kolgjini, J.

论文摘要

除了Gaia卫星的星体任务外,其重复和高精度测量值也可作为全天空光度瞬态调查。来源的突然光亮以GAIA光度科学警报发表,并被公开发行,使社区可以在光学上和光谱上跟进该物体。本文的目的是分析性质并得出GAIA18AEN的基本参数,该参数在2018年初检测到了瞬态。它与发射线星WRAY的位置15-136相吻合。亮点被归类为“ Nova?”基于随后的光谱观察。我们已经分析了GAIA18AEN的两个光谱,并收集了覆盖2018年亮丽物体以及前面和随后的静止时期的物体的可用光度法。基于此观察数据,我们得出了Gaia18aen的参数,并讨论了对象的性质。 Gaia18aen是Gaia卫星发现的第一颗共生恒星。该系统是S型共生星,由M巨人组成,具有略微的金属性,具有TEFF〜3500 K,半径约为230 r $ \ odot $,以及高光度l〜7400 l $ \ odot $。热组件是热白矮人。我们暂时确定系统的轨道周期〜487天。 2018年Gaia18aen的主要爆发伴随着热量成分的温度降低。爆发的第一阶段的特征是高光度l〜27000 l $ \ odot $,在光学最大值后约三周保持恒定,随后逐渐下降和温度升高。在数百天的时间尺度上已经发现了几个重新亮相。

Besides the astrometric mission of the Gaia satellite, its repeated and high-precision measurements serve also as an all-sky photometric transient survey. The sudden brightenings of the sources are published as Gaia Photometric Science Alerts and are made publicly available allowing the community to photometrically and spectroscopically follow-up the object. The goal of this paper was to analyze the nature and derive the basic parameters of Gaia18aen, transient detected at the beginning of 2018. It coincides with the position of the emission line star WRAY 15-136. The brightening was classified as a "nova?" on the basis of subsequent spectroscopic observation. We have analyzed two spectra of Gaia18aen and collected the available photometry of the object covering the brightenings in 2018 and also the preceding and following periods of quiescence. Based on this observational data, we have derived the parameters of Gaia18aen and discussed the nature of the object. Gaia18aen is the first symbiotic star discovered by the Gaia satellite. The system is an S-type symbiotic star and consists of an M giant of a slightly super-solar metallicity, with Teff ~3500 K, a radius of ~230 R$\odot$, and a high luminosity L ~7400 L$\odot$. The hot component is a hot white dwarf. We tentatively determined the orbital period of the system ~487 days. The main outburst of Gaia18aen in 2018 was accompanied by a decrease in the temperature of the hot component. The first phase of the outburst was characterized by the high luminosity L ~27000 L$\odot$, which remained constant for about three weeks after the optical maximum, later followed by the gradual decline of luminosity and increase of temperature. Several re-brightenings have been detected on the timescales of hundreds of days.

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