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首页> 外文期刊>The Astrophysical Journal. Letters >DETECTION OF THERMAL EMISSION FROM A SUPER-EARTH
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DETECTION OF THERMAL EMISSION FROM A SUPER-EARTH

机译:检测超地球的热辐射

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We report on the detection of infrared light from the super-Earth 55 Cnc e, based on four occultations obtained with Warm Spitzer at 4.5 μm. Our data analysis consists of a two-part process. In a first step, we perform individual analyses of each data set and compare several baseline models to optimally account for the systematics affecting each light curve. We apply independent photometric correction techniques, including polynomial detrending and pixel mapping, that yield consistent results at the 1σ level. In a second step, we perform a global Markov Chain Monte Carlo analysis, including all four data sets that yield an occultation depth of 131 ± 28 ppm, translating to a brightness temperature of 2360 ± 300 K in the IRAC 4.5μm channel. This occultation depth suggests a low Bond albedo coupled to an inefficient heat transport from the planetary day side to the night side, or else possibly that the 4.5 μm observations probe atmospheric layers that are hotter than the maximum equilibrium temperature (i.e., a thermal inversion layer or a deep hot layer). The measured occultation phase and duration are consistent with a circular orbit and improves the 3σ upper limit on 55 Cnc e's orbital eccentricity from 0.25 to 0.06.
机译:我们报告了基于4.5微米的Warm Spitzer获得的四次掩盖,从超地球55 Cnc e探测到的红外光。我们的数据分析由两部分组成。第一步,我们对每个数据集进行单独的分析,并比较几个基线模型以最佳地考虑影响每个光曲线的系统。我们应用独立的光度校正技术,包括多项式去趋势和像素映射,可在1σ水平上产生一致的结果。在第二步中,我们执行了全局马尔可夫链蒙特卡罗分析,包括所有四个数据集,这些数据集产生的掩星深度为131±28 ppm,转化为IRAC4.5μm通道中的亮度温度为2360±300K。该掩埋深度表明低的邦德反照率与低效率的热量从行星的日面到夜面的传递有关,或者可能是4.5μm的观测值探测了比最大平衡温度还热的大气层(即热反转层)或较深的热层)。测得的掩星阶段和持续时间与圆形轨道一致,并将55 Cnc e轨道偏心率的3σ上限从0.25提高到0.06。

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