论文标题

来自太空观测的WASP-17B传输频谱的全面分析

A Comprehensive Analysis of WASP-17b's Transmission Spectrum from Space-Based Observations

论文作者

Alderson, L., Wakeford, H. R., MacDonald, R. J., Lewis, N. K., May, E. M., Grant, D., Sing, D. K., Stevenson, K. B., Fowler, J., Goyal, J., Batalha, N. E., Kataria, T.

论文摘要

由于其1770 K平衡温度,WASP-17B,A 1.99 $ R_ \ MATHRM {JUP} $,0.486 $ M_ \ MATHRM {JUP} $ EXOPLANET,位于热和超热码头之间的关键交界处。我们介绍了其0.3-5 $μm$的传输频谱,并以哈勃太空望远镜(HST)宽场摄像头3(WFC3)测量新获得,并利用改进的分析技术,重新升级HST HST HST Space望远镜望远镜想象仪(STIS)和Spitzer Space Telescope Space telescope Infrared摄像头(IRAC)。我们达到132 ppm的中值精度,整个光谱的平均值为272 ppm。我们还利用过渡系外行星调查卫星(TESS)和基于地面的过境观测值来完善WASP-17B的轨道周期。为了解释观察到的气氛,我们分别使用Poseidon和Atmo检索代码来利用自由和平衡的化学检索。我们检测到$>7σ$ h $ _2 $ o引起的吸收,并在$>3σ$上找到co $ _2 $引起的吸收证据。我们没有看到先前检测到的Na和K吸收的证据。在广泛的检索配置套件中,我们发现数据有利于光学限制因素差而具有高金属或低金属模式的双峰解决方案,并证明了将多个统计信息用于模型选择的重要性。未来的詹姆斯·韦伯(James Webb)太空望远镜(JWST)GTO观察结果以及提出的传输光谱将对WASP-17B的气氛产生精确的约束。

Due to its 1770 K equilibrium temperature, WASP-17b, a 1.99 $R_\mathrm{Jup}$, 0.486 $M_\mathrm{Jup}$ exoplanet, sits at the critical juncture between hot and ultra-hot Jupiters. We present its 0.3-5 $μm$ transmission spectrum, with newly obtained with Hubble Space Telescope (HST) Wide Field Camera 3 (WFC3) measurements, and, taking advantage of improved analysis techniques, reanalysed HST Space Telescope Imaging Spectrograph (STIS) and Spitzer Space Telescope Infrared Array Camera (IRAC) observations. We achieve a median precision of 132 ppm, with a mean of 272 ppm across the whole spectrum. We additionally make use of Transiting Exoplanet Survey Satellite (TESS) and ground-based transit observations to refine the orbital period of WASP-17b. To interpret the observed atmosphere, we make use of free and equilibrium chemistry retrievals using the POSEIDON and ATMO retrieval codes respectively. We detect absorption due to H$_2$O at $>7 σ$, and find evidence of absorption due to CO$_2$ at $>3 σ$. We see no evidence of previously detected Na and K absorption. Across an extensive suite of retrieval configurations, we find the data favours a bimodal solution with high or low metallicity modes as a result of poor constraints in the optical, and demonstrate the importance of using multiple statistics for model selection. Future James Webb Space Telescope (JWST) GTO observations, combined with the presented transmission spectrum, will enable precise constraints on WASP-17b's atmosphere.

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