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Kepler-18b,c, and d: A System of Three Planets Confirmed by Transit Timing Variations, Light Curve Validation, Warm-Spitzer Photometry, and Radial Velocity Measurements

机译:开普勒18b,c和d:由瞬态时间变化,光曲线验证,温-斯皮策光度法和径向速度测量确定的三颗行星的系统

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摘要

We report the detection of three transiting planets around a Sun-like star, which we designate Kepler-18. The transit signals were detected in photometric data from the Kepler satellite, and were confirmed to arise from planets using a combination of large transit-timing variations (TTVs), radial velocity variations, Warm-Spitzer observations, and statistical analysis of false-positive probabilities. The Kepler-18 star has a mass of 0.97 M_☉, a radius of 1.1 R_☉, an effective temperature of 5345 K, and an iron abundance of [Fe/H] = +0.19. The planets have orbital periods of approximately 3.5, 7.6, and 14.9 days. The innermost planet "b" is a "super-Earth" with a mass of 6.9 ± 3.4 M_⊕, a radius of 2.00 ± 0.10 R_⊕, and a mean density of 4.9 ± 2.4 g cm^3. The two outer planets "c" and "d" are both low-density Neptune-mass planets. Kepler-18c has a mass of 17.3 ± 1.9 M_⊕, a radius of 5.49 ± 0.26 R_⊕, and a mean density of 0.59 ± 0.07 g cm^3, while Kepler-18d has a mass of 16.4 ± 1.4 M_⊕, a radius of 6.98 ± 0.33 R_⊕ and a mean density of 0.27 ± 0.03 g cm^3. Kepler-18c and Kepler-18d have orbital periods near a 2:1 mean-motion resonance, leading to large and readily detected TTVs.
机译:我们报告发现了围绕一颗类似太阳的恒星的三个过渡行星,我们将其指定为Kepler-18。在来自开普勒卫星的光度数据中检测到了过渡信号,并结合使用了较大的过渡时间变化(TTV),径向速度变化,Warm-Spitzer观测值和假阳性概率的统计分析,证实了这些信号来自行星。开普勒18星的质量为0.97M_☉,半径为1.1R_☉,有效温度为5345 K,铁丰度[Fe / H] = +0.19。行星的轨道周期约为3.5、7.6和14.9天。最内层的行星“ b”是质量为6.9±3.4M_⊕,半径为2.00±0.10R_⊕,平均密度为4.9±2.4 g cm ^ 3的“超地球”。两个外层行星“ c”和“ d”都是低密度海王星质量的行星。开普勒18c的质量为17.3±1.9M_⊕,半径为5.49±0.26R_⊕,平均密度为0.59±0.07 g cm ^ 3,而开普勒18d的质量为16.4±1.4M_⊕,a半径为6.98±0.33R_⊕,平均密度为0.27±0.03 g cm ^ 3。开普勒18c和开普勒18d的轨道周期接近2:1的平均运动共振,从而导致大型且易于检测的TTV。

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