论文标题
狩猎年轻和成熟的系外行星(百里香)VIII:一个来自开普勒的pleiades-age协会,载有两个过境的行星系统
Transit Hunt for Young and Maturing Exoplanets (THYME) VIII: a Pleiades-age association harboring two transiting planetary systems from Kepler
论文作者
论文摘要
年轻的行星为行星系统的早期阶段和演变提供了一个窗口。此类研究的理想行星是在共同的协会中,父母可以精确地确定其年龄。我们描述了开普勒领域中的年轻关联(Melange-3),该结合具有两个过境的行星系统(Kepler-1928和Kepler-970)。我们通过在开普勒行星宿主周围搜索具有高水平锂的运动学和空间过度繁殖来识别Melange-3。为了确定Melange-3的年龄和成员身份,我们将新的高分辨率光谱与档案光曲线,速度和恒星的档案曲线结合在一起,在空间和运动学上在Kepler-1928附近。我们使用候选成员的旋转序列,锂水平和颜色标记图来确认存在CoEval $ 105 \ pm $ 10 MYR种群。 Melange-3可能是最近确定的Theia 316流的一部分。对于两个系外行星系统,我们考虑了新确定的年龄,我们修改了恒星和行星参数。安装了4.5年的开普勒光曲线,我们发现Kepler-1928 B是$ 2.0 \ pm0.1r_ \ oplus $ Planet在19.58天轨道上,而Kepler-970 B则是$ 2.8 \ pm0.2r_ \ pm0.2r_ \ oplus $ oplus $ oplus $ Planet on 16.73-Day Orbit。 Kepler-1928先前被标记为黯然失色的二进制文件,我们排除了使用Apogee的径向速度排除,并在统计上将信号验证为原始行星。鉴于其与开普勒领域的重叠,Melange-3对于对年度时间表的斑点进化很有价值,并且这两个行星都为年轻恒星协会的过境行星的不断增长做出了贡献。
Young planets provide a window into the early stages and evolution of planetary systems. Ideal planets for such research are in coeval associations, where the parent population can precisely determine their ages. We describe a young association (MELANGE-3) in the Kepler field, which harbors two transiting planetary systems (Kepler-1928 and Kepler-970). We identify MELANGE-3 by searching for kinematic and spatial overdensities around Kepler planet hosts with high levels of lithium. To determine the age and membership of MELANGE-3, we combine new high-resolution spectra with archival light curves, velocities, and astrometry of stars near Kepler-1928 spatially and kinematically. We use the resulting rotation sequence, lithium levels, and color-magnitude diagram of candidate members to confirm the presence of a coeval $105\pm$10 Myr population. MELANGE-3 may be part of the recently identified Theia 316 stream. For the two exoplanet systems, we revise the stellar and planetary parameters, taking into account the newly-determined age. Fitting the 4.5 yr Kepler light curves, we find that Kepler-1928 b is a $2.0\pm0.1R_\oplus$ planet on a 19.58-day orbit, while Kepler-970 b is a $2.8\pm0.2R_\oplus$ planet on a 16.73-day orbit. Kepler-1928 was previously flagged as an eclipsing binary, which we rule out using radial velocities from APOGEE and statistically validate the signal as planetary in origin. Given its overlap with the Kepler field, MELANGE-3 is valuable for studies of spot evolution on year timescales, and both planets contribute to the growing work on transiting planets in young stellar associations.