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首页> 外文期刊>The Astrophysical journal >VALIDATION OF KEPLER'S MULTIPLE PLANET CANDIDATES. III. LIGHT CURVE ANALYSIS AND ANNOUNCEMENT OF HUNDREDS OF NEW MULTI-PLANET SYSTEMS
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VALIDATION OF KEPLER'S MULTIPLE PLANET CANDIDATES. III. LIGHT CURVE ANALYSIS AND ANNOUNCEMENT OF HUNDREDS OF NEW MULTI-PLANET SYSTEMS

机译:验证开普勒的多个行星候选者。三,新的多行星系统的光曲线分析和数百个公告

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摘要

The Kepler mission has discovered more than 2500 exoplanet candidates in the first two years of spacecraft data, with approximately 40% of those in candidate multi-planet systems. The high rate of multiplicity combined with the low rate of identified false positives indicates that the multiplanet systems contain very few false positive signals due to other systems not gravitationally bound to the target star. False positives in the multi-planet systems are identified and removed, leaving behind a residual population of candidate multi-planet transiting systems expected to have a false positive rate less than 1%. We present a sample of 340 planetary systems that contain 851 planets that are validated to substantially better than the 99% confidence level; the vast majority of these have not been previously verified as planets. We expect ~two unidentified false positives making our sample of planet very reliable. We present fundamental planetary properties of our sample based on a comprehensive analysis of Kepler light curves, ground-based spectroscopy, and high-resolution imaging. Since we do not require spectroscopy or high-resolution imaging for validation, some of our derived parameters for a planetary system may be systematically incorrect due to dilution from light due to additional stars in the photometric aperture. Nonetheless, our result nearly doubles the number verified exoplanets.
机译:开普勒任务在航天器数据的头两年中发现了2500多名系外行星候选者,其中约40%的候选者是多行星系统。高复数率与低比例的已识别假阳性率相结合表明,由于其他系统未在重力作用下与目标恒星结合,多行星系统包含极少的假阳性信号。识别并消除了多行星系统中的误报,留下了预期的误报率小于1%的候选多行星过渡系统的剩余人口。我们提供了340个行星系统的样本,其中包含851个行星,这些行星的有效性大大高于99%的置信度。其中绝大多数尚未被验证为行星。我们期望〜两个不确定的误报,使我们的行星样本非常可靠。我们根据开普勒光曲线,地基光谱学和高分辨率成像的综合分析,介绍了样品的基本行星属性。由于我们不需要光谱学或高分辨率成像来进行验证,因此,由于光度学孔径中的其他恒星导致的光稀释作用,导致某些行星系统参数在系统上不正确。尽管如此,我们的结果几乎使核定系外行星的数量增加了一倍。
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