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首页> 外文期刊>The astronomical journal >OGLE-2017-BLG-0482Lb: A Microlensing Super-Earth Orbiting a Low-mass Host Star
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OGLE-2017-BLG-0482Lb: A Microlensing Super-Earth Orbiting a Low-mass Host Star

机译:OGLE-2017-BLG-0482Lb:微透镜超地球绕低质量恒星飞行

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We report the discovery of a planetary system in which a super-Earth orbits a late M-dwarf host. The planetary system was found from the analysis of the microlensing event OGLE-2017-BLG-0482, wherein the planet signal appears as a short-term anomaly to the smooth lensing light curve produced by the host. Despite its weak signal and short duration, the planetary signal was firmly detected from the dense and continuous coverage by three microlensing surveys. We find a planet/host mass ratio of q?~?1.4?×?10?4. We measure the microlens parallax pE from the long-term deviation in the observed lensing light curve, but the angular Einstein radius qE cannot be measured because the source trajectory did not cross the planet-induced caustic. Using the measured event timescale and the microlens parallax, we find that the masses of the planet and the host are Mp 9.0 4.5 M = 9.0 - + ? and Mhost 0.20 0.10 M = 0.20 - + ?, respectively, and the projected separation between them is a 1.8 0.7 = 0.6 ^ - + au. The estimated distance to the lens is D 5.8 L 2.1 = 1.8 - + kpc. The discovery of the planetary system demonstrates that microlensing provides an important method to detect low-mass planets orbiting low-mass stars.
机译:我们报告发现了一个行星系统,其中超地球绕着M型矮星宿主飞行。行星系统是通过对微透镜事件OGLE-2017-BLG-0482的分析发现的,其中行星信号作为主机产生的平滑透镜光曲线的短期异常出现。尽管其信号微弱且持续时间短,但通过三个微透镜勘测从密集而连续的覆盖范围中可以牢固地检测到行星信号。我们发现行星/主质量比为q?〜?1.4?×?10?4。我们从观察到的透镜光曲线中的长期偏差来测量微透镜视差pE,但是由于源轨迹未穿过行星引起的苛性碱,因此无法测量爱因斯坦角半径qE。使用测得的事件时标和微透镜视差,我们发现行星和宿主的质量为Mp 9.0 4.5 M = 9.0-+?和Mhost分别为0.20 0.10 M = 0.20-+,它们之间的投影距离为1.8 0.7 = 0.6 ^-+ au。到镜头的估计距离为D 5.8 L 2.1 = 1.8-+ kpc。行星系统的发现表明,微透镜为探测绕低质量恒星运转的低质量行星提供了一种重要的方法。

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