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Confirmation of an exoplanet using the transit color signature: Kepler-418b, a blended giant planet in a multiplanet system

机译:使用过境颜色签名确认系外行星:Kepler-418b,多行星系统中的混合大行星

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Aims. We announce confirmation of Kepler-418b, one of two proposed planets in this system. This is the first confirmation of an exoplanet based primarily on the transit color signature technique. Methods. We used the Kepler public data archive combined with multicolor photometry from the Gran Telescopio de Canarias and radial velocity follow-up using FIES at the Nordic Optical Telescope for confirmation. Results. We report a confident detection of a transit color signature that can only be explained by a compact occulting body, entirely ruling out a contaminating eclipsing binary, a hierarchical triple, or a grazing eclipsing binary. Those findings are corroborated by our radial velocity measurements, which put an upper limit of ~1?MJup on the mass of Kepler-418b. We also report that the host star is significantly blended, confirming the ~10% light contamination suspected from the crowding metric in the Kepler light curve measured by the Kepler team. We report detection of an unresolved light source that contributes an additional ~30% to the target star, which would not have been detected without multicolor photometric analysis. The resulting planet-star radius ratio is 0.110 ± 0.0025, more than 25% more than the 0.087 measured by Kepler leading to a radius of 1.20 ± 0.16?RJup instead of the 0.94?RJup measured by the Kepler team. Conclusions. This is the first confirmation of an exoplanet candidate based primarily on the transit color signature, demonstrating that this technique is viable from ground for giant planets. It is particularly useful for planets with long periods such as Kepler-418b, which tend to have long transit durations. While this technique is limited to candidates with deep transits from the ground, it may be possible to confirm earth-like exoplanet candidates with a few hours of observing time with an instrument like the James Webb Space Telescope. Additionally, multicolor photometric analysis of transits can reveal unknown stellar neighbors and binary companions that do not affect the classification of the transiting object but can have a very significant effect on the perceived planetary radius.
机译:目的我们宣布确认开普勒418b,这是该系统中两个拟议行星之一。这是主要基于过渡色特征技术对系外行星的首次确认。方法。我们将开普勒公共数据档案库与加那利群岛格兰望远镜的多色光度法结合使用,并通过北欧光学望远镜的FIES进行径向速度跟踪进行确认。结果。我们报告说,只有通过紧凑的掩星体才能完全确定排除过境颜色特征的能力,完全排除了污染的日食二进制,分层的三元组或掠食性日食二进制。我们的径向速度测量结果证实了这些发现,对开普勒418b的质量上限设定为〜1?MJup。我们还报告说,宿主恒星已充分融合,从而证实了由开普勒团队测量的开普勒光曲线中的拥挤指标所怀疑的〜10%的光污染。我们报告检测到一个未解析的光源,该光源为目标恒星贡献了额外的〜30%,如果不进行多色光度分析则无法检测到。产生的行星-星半径比为0.110±0.0025,比开普勒测量的0.087多25%,从而得到的半径为1.20±0.16?RJup,而不是开普勒团队测量的0.94?RJup。结论。这是主要基于过境颜色特征对系外行星候选者的首次确认,表明该技术对于巨型行星而言是可行的。对于周期较长的行星,例如开普勒418b等行星,它特别有用。尽管此技术仅限于从地面经过深空的候选人,但有可能使用詹姆斯·韦伯太空望远镜等仪器在几个小时的观察时间内确认类似地球的系外行星候选人。此外,对过境的多色光度分析可以发现未知的恒星邻居和二元伴星,它们不会影响过境物体的分类,但会对感知的行星半径产生非常显着的影响。

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