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首页> 外文期刊>The Astrophysical journal >UNDERSTANDING THE EFFECTS OF STELLAR MULTIPLICITY ON THE DERIVED PLANET RADII FROM TRANSIT SURVEYS: IMPLICATIONS FOR KEPLER, K2, AND TESS
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UNDERSTANDING THE EFFECTS OF STELLAR MULTIPLICITY ON THE DERIVED PLANET RADII FROM TRANSIT SURVEYS: IMPLICATIONS FOR KEPLER, K2, AND TESS

机译:理解恒星多重性对过渡调查得出的行星半径的影响:对开普勒,K2和泰斯的影响

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We present a study on the effect of undetected stellar companions on the derived planetary radii for Kepler Objects of Interest (KOIs). The current production of the KOI list assumes that each KOI is a single star. Not accounting for stellar multiplicity statistically biases the planets toward smaller radii. The bias toward smaller radii depends on the properties of the companion stars and whether the planets orbit the primary or the companion stars. Defining a planetary radius correction factor, XR, we find that if the KOIs are assumed to be single, then, on average, the planetary radii may be underestimated by a factor of . If typical radial velocity and high-resolution imaging observations are performed and no companions are detected, then this factor reduces to . The correction factor is dependent on the primary star properties and ranges from for A and F stars to for K and M stars. For missions like K2 and TESS where the stars may be closer than the stars in the Kepler target sample, observational vetting (primary imaging) reduces the radius correction factor to . Finally, we show that if the stellar multiplicity rates are not accounted for correctly, then occurrence rate calculations for Earth-sized planets may overestimate the frequency of small planets by as much as 15%–20%.
机译:我们目前对开普勒感兴趣的物体(KOIs)的衍生行星半径上未发现的恒星伴星的影响进行研究。 KOI列表的当前产量假设每个KOI都是一颗星星。不考虑恒星的多重性,统计上会将行星偏向较小的半径。对较小半径的偏倚取决于伴星的性质以及行星是环绕主星还是伴星运行。定义行星半径校正因子XR时,我们发现,如果假设KOI为单个,则平均而言,行星半径可能会低估。如果执行典型的径向速度和高分辨率成像观察,但未检测到伴随,则该因子减小为。校正因子取决于主要恒星的属性,范围从A和F恒星到K和M恒星。对于K2和TESS之类的任务,其中的恒星可能比开普勒目标样本中的恒星更近,观察式观测(一次成像)将半径校正因子减小到。最后,我们证明,如果不能正确地解释恒星的多重率,那么对地球大小的行星的发生率计算可能会高估小行星的频率多达15%–20%。

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