论文标题

Ares II:表征Hot Jupiters WASP-127 B,WASP-79 B和WASP-62 B与HST

ARES II: Characterising the Hot Jupiters WASP-127 b, WASP-79 b and WASP-62 b with HST

论文作者

Skaf, Nour, Bieger, Michelle Fabienne, Edwards, Billy, Changeat, Quentin, Morvan, Mario, Kiefer, Flavien, Blain, Doriann, Zingales, Tiziano, Poveda, Mathilde, Al-Refaie, Ahmed, Baeyens, Robin, Gressier, Amelie, Guilluy, Gloria, Jaziri, Adam Yassin, Modirrousta-Galian, Darius, Mugnai, Lorenzo V., Pluriel, William, Whiteford, Niall, Wright, Sam, Yip, Kai Hou, Charnay, Benjamin, Leconte, Jeremy, Drossart, Pierre, Tsiaras, Angelos, Venot, Olivia, Waldmann, Ingo, Beaulieu, Jean-Philippe

论文摘要

本文介绍了三个大气态行星的大气表征:黄蜂-127b,WASP-79B和WASP-62B。我们分析了使用IRACLIS管道和TAUREX3检索代码(两者都是公开可用的),分析了用G141 Grism(1.088-1.68 $ $ m)在Hubble太空望远镜(HST)上获得的宽场摄像头3(WFC3)的光谱数据。对于WASP-127 B,这是迄今为止发现的最小密集的星球,位于短期的Neptune沙漠中,我们的检索结果发现,强烈的吸水吸水量对应于充足的日志(H $ _2 $ o)= -2.71 $^{+0.78} log(feH)= $ -5.25^{+0.88} _ { - 1.10} $,具有延伸的云氛围。我们还检测到WASP-79 B和WASP-62 B大气中的水蒸气,最佳拟合模型也表明氢化铁也存在。我们使用了大气可检测性指数(ADI)以及贝叶斯对数证据来量化检测强度,并将我们的结果与Tsiaras等人的热木星种群研究进行了比较。 2018年。尽管这里研究的所有行星都是与即将到来的设施(例如James Webb太空望远镜(JWST)和Ariel)进行表征的合适目标,但WASP-127 B尤其引起了人们的关注,并且由于其低密度而引起了人们的关注,并且一项彻底的大气研究将发展我们对星球形成和迁移的理解。

This paper presents the atmospheric characterisation of three large, gaseous planets: WASP-127b, WASP-79b and WASP-62b. We analysed spectroscopic data obtained with the G141 grism (1.088 - 1.68 $μ$m) of the Wide Field Camera 3 (WFC3) onboard the Hubble Space Telescope (HST) using the Iraclis pipeline and the TauREx3 retrieval code, both of which are publicly available. For WASP-127 b, which is the least dense planet discovered so far and is located in the short-period Neptune desert, our retrieval results found strong water absorption corresponding to an abundance of log(H$_2$O) = -2.71$^{+0.78}_{-1.05}$, and absorption compatible with an iron hydride abundance of log(FeH)=$-5.25^{+0.88}_{-1.10}$, with an extended cloudy atmosphere. We also detected water vapour in the atmospheres of WASP-79 b and WASP-62 b, with best-fit models indicating the presence of iron hydride, too. We used the Atmospheric Detectability Index (ADI) as well as Bayesian log evidence to quantify the strength of the detection and compared our results to the hot Jupiter population study by Tsiaras et al. 2018. While all the planets studied here are suitable targets for characterisation with upcoming facilities such as the James Webb Space Telescope (JWST) and Ariel, WASP-127 b is of particular interest due to its low density, and a thorough atmospheric study would develop our understanding of planet formation and migration.

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