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High-resolution spectroscopic search for the thermal emission of the extrasolar planet HD?217107?b

机译:高分辨率光谱搜索太阳系外行星HD?217107?b的热辐射

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摘要

We analyzed the combined near-infrared spectrum of a star-planet system with thermal emission atmospheric models, based on the composition and physical parameters of the system. The main objective of this work is to obtain the inclination of the orbit, the mass of the exoplanet, and the planet-to-star flux ratio. We present the results of our routines on the planetary system HD?217107, which was observed with the high-resolution spectrograph Phoenix at 2.14 μm. We revisited and tuned a correlation method to directly search for the high-resolution signature of a known non-transiting extrasolar planet. We could not detect the planet with our current data, but we present sensitivity estimates of our method and the respective constraints on the planetary parameters. With a confidence level of 3-σ we constrain the HD?217107?b planet-to-star flux ratio to be less than 5????×????10-3. We also carried out simulations on other planet candidates to assess the detectability limit of atmospheric water on realistically simulated data sets for this instrument, and we outline an optimized observational and selection strategy to increase future probabilities of success by considering the optimal observing conditions and the most suitable candidates.
机译:我们根据系统的组成和物理参数,分析了具有热辐射大气模型的星际行星系统的组合近红外光谱。这项工作的主要目的是获得轨道的倾角,系外行星的质量以及行星与恒星的通量比。我们在HD?217107行星系统上展示了例程的结果,该结果是由2.14μm的高分辨率光谱仪Phoenix观测到的。我们重新审视并调整了一种相关方法,以直接搜索已知的非凌日太阳系外行星的高分辨率特征。我们无法使用当前数据检测到行星,但是我们给出了我们方法的灵敏度估计以及行星参数的各自约束。以3-σ的置信度,我们将HD 217107b行星与恒星的通量比约束为小于5≤x×≤10-3。我们还对其他候选行星进行了模拟,以评估该仪器在现实模拟数据集上对大气水的可探测性极限,并概述了一种优化的观测和选择策略,以通过考虑最佳观测条件和最合理的观测条件来增加未来的成功概率。合适的人选。

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