论文标题

干旱或多云:使用高分辨率光谱法来表征超收获55的大气

Arid or Cloudy: Characterizing the Atmosphere of the super-Earth 55 Cancri e using High-Resolution Spectroscopy

论文作者

Jindal, Abhinav, de Mooij, Ernst J. W., Jayawardhana, Ray, Deibert, Emily K., Brogi, Matteo, Rustamkulov, Zafar, Fortney, Jonathan J., Hood, Callie E., Morley, Caroline V.

论文摘要

附近的超级地球55 CNC E ORBITS明亮(V = 5.95 Mag)星,周期约为18小时,质量约为8个地球质量。它的大气可能是水丰富的,并且具有很大的规模高度,尽管试图表征它产生了模棱两可的结果。在这里,我们使用双子座北望远镜和Graces光谱仪在高光谱分辨率的大气中对水和TIO进行了敏感的搜索。我们将观察结果与Subaru和CFHT的先前观察结果相结合,从而改善了水蒸气存在的限制。我们根据最近的测量采用具有更新的行星半径的参数模型,并使用互相关技术来最大化灵敏度。我们的结果与多云或最少的水和TIO的气氛一致。使用这些参数模型,我们排除了一个富含水的气氛(VMR> = 0.1%),平均分子量在3 sigma置信度下为<= 15 g/mol,在先前的极限上提高了显着的余量。对于TIO,我们排除了<= 5 g/mol的平均分子量,而VMR大于10^-8的平均分子量含量为3 sigma置信度;对于大于10^-7的VMR,极限上升到平均分子量<= 10 g/mol。我们可以排除低平均分子量化学平衡模型,包括和排除在非常高置信水平(> 10 Sigma)的TIO/VO(> 10 Sigma)。总体而言,我们的结果与平均分子量高的大气和/或云或没有气氛一致。

The nearby super-Earth 55 Cnc e orbits a bright (V = 5.95 mag) star with a period of ~ 18 hours and a mass of ~ 8 Earth masses. Its atmosphere may be water-rich and have a large scale-height, though attempts to characterize it have yielded ambiguous results. Here we present a sensitive search for water and TiO in its atmosphere at high spectral resolution using the Gemini North telescope and the GRACES spectrograph. We combine observations with previous observations from Subaru and CFHT, improving the constraints on the presence of water vapor. We adopt parametric models with an updated planet radius based on recent measurements, and use a cross-correlation technique to maximize sensitivity. Our results are consistent with atmospheres that are cloudy or contain minimal amounts of water and TiO. Using these parametric models, we rule out a water-rich atmosphere (VMR >= 0.1%) with a mean molecular weight of <= 15 g/mol at a 3 sigma confidence level, improving on the previous limit by a significant margin. For TiO, we rule out a mean molecular weight of <= 5 g/mol with a 3 sigma confidence level for a VMR greater than 10^-8; for a VMR of greater than 10^-7, the limit rises to a mean molecular weight of <= 10 g/mol. We can rule out low mean-molecular-weight chemical equilibrium models both including and excluding TiO/VO at very high confidence levels (> 10 sigma). Overall, our results are consistent with an atmosphere with a high mean molecular weight and/or clouds, or no atmosphere.

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