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KIC 7177553: A QUADRUPLE SYSTEM OF TWO CLOSE BINARIES

机译:KIC 7177553:两个紧密二进制的四元系统

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KIC 7177553 was observed by the Kepler satellite to be an eclipsing eccentric binary star system with an 18-day orbital period. Recently, an eclipse timing study of the Kepler binaries has revealed eclipse timing variations (ETVs) in this object with an amplitude of ~100 s?and an outer period of 529 days. The implied mass of the third body is that of a super-Jupiter, but below the mass of a brown dwarf. We therefore embarked on a radial velocity (RV) study of this binary to determine its system configuration and to check the hypothesis that it hosts a giant planet. From the RV measurements, it became immediately obvious that the same Kepler target contains another eccentric binary, this one with a 16.5-day orbital period. Direct imaging using adaptive optics reveals that the two binaries are separated by 04 (~167 AU)?and have nearly the same magnitude (to within 2%). The close angular proximity of the two binaries?and very similar γ velocities?strongly suggest that KIC 7177553 is one of the rare SB4 systems consisting of two eccentric binaries where at least one system is eclipsing. Both systems consist of slowly rotating, nonevolved, solar-like stars of comparable masses. From the orbital separation and the small difference in γ velocity, we infer that the period of the outer orbit most likely lies in the range of?1000–3000 yr. New images taken over the next few years, as well as the high-precision astrometry of the Gaia satellite mission, will allow us to set much narrower constraints on the system geometry. Finally, we note that the observed ETVs in the Kepler data cannot be produced by the second binary. Further spectroscopic observations on a longer timescale will be required to prove the existence of the massive planet.
机译:开普勒卫星观测到KIC 7177553是一个绕轨道运行18天的日食偏心双星系统。最近,对开普勒二进制文件的日食定时研究表明,该对象的日食定时变化(ETV)的幅度约为100秒,外部周期为529天。第三天体的隐含质量是超级木星的质量,但低于褐矮星的质量。因此,我们着手对该双星进行径向速度(RV)研究,以确定其系统配置并检查其拥有一个巨大行星的假说。从RV测量中,可以很明显地看出,同一开普勒目标还包含另一个偏心双星,该轨道具有16.5天的轨道周期。使用自适应光学器件的直接成像显示两个二进制文件之间的距离为04(〜167 AU)?,并且幅度几乎相同(在2%以内)。这两个二进制文件的紧密角接近度和非常类似的γ速度强烈表明,KIC 7177553是由两个偏心二进制文件组成的稀有SB4系统之一,其中至少有一个系统在逐渐变暗。这两个系统都由质量类似的缓慢旋转,无旋转的类似太阳的恒星组成。从轨道间隔和γ速度的微小差异,我们可以推断出外轨道的周期最有可能在1000-3000 yr范围内。在接下来的几年中拍摄的新图像,以及盖亚卫星任务的高精度天体测量技术,将使我们能够对系统几何形状设置更狭窄的约束。最后,我们注意到开普勒数据中观察到的ETV不能由第二个二进制文件生成。为了证明大质量行星的存在,需要在更长的时间范围内进行进一步的光谱观察。

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