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Robo-AO Kepler Survey. V. The Effect of Physically Associated Stellar Companions on Planetary Systems

机译:Robo-AO开普勒调查。 V.物理相关的恒星伴侣对行星系统的影响

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The Kepler light curves used to detect thousands of planetary candidates are susceptible to dilution due to blending with previously unknown nearby stars. With the automated laser adaptive optics instrument, Robo-AO, we have observed 620 nearby stars around 3857 planetary candidates host stars. Many of the nearby stars, however, are not bound to the KOI. We use galactic stellar models and the observed stellar density to estimate the number and properties of unbound stars. We estimate the spectral type and distance to 145 KOIs with nearby stars using multiband observations from Robo-AO and Keck-AO. Most stars within 1″ ?of a Kepler planetary candidate are likely bound, in agreement with past studies. We use likely bound stars and the precise stellar parameters from the California Kepler Survey to search for correlations between stellar binarity and planetary properties. No significant difference between the binarity fraction of single and multiple-planet systems is found, and planet hosting stars follow similar binarity trends as field stars, many of which likely host their own non-aligned planets. We find that hot Jupiters are ~4× more likely than other planets to reside in a binary star system. We correct the radius estimates of the planet candidates in characterized systems and find that for likely bound systems, the estimated planetary radii will increase on average by a factor of 1.77, if either star is equally likely to host the planet. Lastly, we find the planetary radius gap is robust to the impact of dilution.
机译:由于与先前未知的附近星恒星混合,用于检测数千个行星候选者的开普勒光曲线易于稀释。随着自动激光自适应光学仪器,Robo-AO,我们在3857年的行星候选人约3857左右观察到了620个附近的星星。然而,许多附近的恒星并不绑在锦鲤。我们使用Galactic Stellar模型和观察到的恒星密度来估计未绑定恒星的数量和性质。使用来自Robo-Ao和Keck-Ao的多频带观测,通过附近的恒星估计光谱类型和距离到145 kois。大多数明星在1英寸之内?在过去的研究方面,开普勒行星候选人可能会受到约束。我们使用来自加州开普勒调查的可能束缚恒星和精确的恒星参数,以寻找恒星二十型和行星特性之间的相关性。发现单行星系统的二十型分数之间没有显着差异,行星举办星星遵循类似的二十型趋势作为野外恒星,其中许多可能举办自己的不结盟行星。我们发现热门队员比其他行星更有可能纳入二进制星系。我们校正特征系统中的行星候选的半径估计,并发现对于可能的束缚系统,如果任一星的举办行星,估计的行星半径将平均增加1.77。最后,我们发现行星半径间隙对稀释的影响是强大的。

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