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Characterizing K2 Candidate Planetary Systems Orbiting Low-mass Stars. I. Classifying Low-mass Host Stars Observed during Campaigns 1–7

机译:表征绕低质量恒星运转的K2候选行星系统。 I.对运动1–7中观测到的低质量恒星进行分类

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摘要

We present near-infrared spectra for 144 candidate planetary systems identified during Campaigns 1–7 of the NASA K2 Mission. The goal of the survey was to characterize planets orbiting low-mass stars, but our Infrared Telescope Facility/SpeX and Palomar/TripleSpec spectroscopic observations revealed that 49% of our targets were actually giant stars or hotter dwarfs reddened by interstellar extinction. For the 72 stars with spectra consistent with classification as cool dwarfs (spectral types K3–M4), we refined their stellar properties by applying empirical relations based on stars with interferometric radius measurements. Although our revised temperatures are generally consistent with those reported in the Ecliptic Plane Input Catalog (EPIC), our revised stellar radii are typically 0.13 R_⊙ (39%) larger than the EPIC values, which were based on model isochrones that have been shown to underestimate the radii of cool dwarfs. Our improved stellar characterizations will enable more efficient prioritization of K2 targets for follow-up studies.
机译:我们展示了NASA K2任务1-7战役中识别出的144个候选行星系统的近红外光谱。这项调查的目的是确定绕低质量恒星运行的行星的特征,但是我们的红外望远镜设施/ SpeX和Palomar / TripleSpec光谱观测表明,我们的目标中有49%实际上是由于星际灭绝而变红的巨星或更矮的矮星。对于光谱符合分类为冷矮星(光谱类型为K3–M4)的72颗恒星,我们通过基于具有干涉半径测量结果的恒星应用经验关系来完善其恒星特性。尽管我们的修正温度通常与黄道平面输入目录(EPIC)中报告的温度一致,但我们的修正恒星半径通常比EPIC值大0.13R_⊙(39%),EPIC值基于已证明的模型等时线。低估了矮人的半径。我们改进的恒星表征将使K2目标的更有效优先排序可用于后续研究。

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