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Three Statistically Validated K2 Transiting Warm Jupiter Exoplanets Confirmed as Low-mass Stars

机译:三种统计验证的K2过滤温暖的木星外产网上确认为低质量恒星

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We have identified three K2 transiting star-planet systems, K2-51 (EPIC 202900527), K2-67 (EPIC 206155547),and K2-76 (EPIC 206432863), as stellar binaries with low-mass stellar secondaries. The three systems were statistically validated as transiting planets, and through measuring their orbits by radial velocity (RV) monitoring we have derived the companion masses to be 0.1459_(-0.0032)~(+0.0029) M_☉ (EPIC 202900527 B), -0.1612_(-0.0067)~(+0.0072) M_☉ (EPIC 206155547 B), and 0.0942 ± 0.0019 M_☉ (EPIC 206432863 B). Therefore, they are not planets but small stars,part of the small sample of low-mass stars with measured radius and mass. The three systems are at an orbital period range of 12-24 days, and the secondaries have a radius within 0.9-1.9 R_J, not inconsistent with the properties of warm Jupiter planets. These systems illustrate some of the existing challenges in the statistical validation approach. We point out a few possible origins for the initial misclassification of these objects, including poor characterization of the host star, the difficulty in detecting a secondary eclipse in systems on an eccentric orbit, and the difficulty in distinguishing between the smallest stars and gas giant planets as the two populations have indistinguishable radius distributions. Our work emphasizes the need for obtaining medium-precision RV measurements to distinguish between companions that are small stars, brown dwarfs, and gas giant planets.
机译:我们已经识别了三个K2过渡星球 - 行星系统,K2-51(EPIC 2029005527),K2-67(EPIC 20655547)和K2-76(EPIC 206432863),作为具有低质量恒星赋值的恒星二进制文件。三个系统在统计上验证为过渡行星,通过径向速度(RV)监测来通过测量它们的轨道,我们衍生的伴侣群至0.1459 _( - 0.0032)〜(+0.0029)M_‖(EPIC 202900527 B), - 0.1612 _( - 0.0067)〜(+0.0072)M_∞(EPIC 206155547 B),0.0942±0.0019m_ν(Epic 206432863 B)。因此,它们不是行星,而是小恒星,小质量恒星样本的一部分具有测量的半径和质量。这三个系统处于12-24天的轨道周期范围内,赋容在0.9-1.9 r_j之内具有半径,与温暖木星行星的性质不一致。这些系统说明了统计验证方法中的一些现有挑战。我们指出了一些可能的起源来用于这些物体的初始错误分类,包括宿主明星的表征差,难以检测偏心轨道上的系统中的次要日食,以及区分最小的恒星和煤气巨型行星的困难由于两个人群具有无法区分的半径分布。我们的工作强调需要获得中等精度的RV测量,以区分小明星,棕色矮人和天然气巨头行星的同伴。

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