论文标题

哈勃平服计划:强烈辐照的巨型系外行星WASP-76B的过境和日食光谱

The Hubble PanCET program: Transit and Eclipse Spectroscopy of the Strongly Irradiated Giant Exoplanet WASP-76b

论文作者

Fu, Guangwei, Deming, Drake, Lothringer, Joshua, Nikolov, Nikolay, Sing, David K., Kempton, Eliza M. -R., Ih, Jegug, Evans, Thomas M., Stevenson, Kevin, Wakeford, H. R., Rodriguez, Joseph E., Eastman, Jason D., Stassun, Keivan, Henry, Gregory W., López-Morales, Mercedes, Lendl, Monika, Conti, Dennis M., Stockdale, Chris, Collins, Karen, Kielkopf, John, Barstow, Joanna K., Sanz-Forcada, Jorge, Ehrenreich, David, Bourrier, Vincent

论文摘要

平衡温度大于2000k的超热木星是独特的目标,因为它们为我们提供了对大气在极端条件下的表现的关键见解。这类巨型行星会从其宿主恒星中获得强烈的辐射,并且通常具有强烈的辐照和高度膨胀的气氛。在这种高温下,预计云形成将被抑制,并可能发生水蒸气的热解离。我们观察到使用哈勃太空望远镜(HST)和$ spitzer $的超热木星黄蜂,具有7次转运和5张蚀,用于对其大气化学和物理过程进行全面研究。我们在光学和近红外过境光谱中检测到TIO和H $ _2 $ o。 Fe,Ni,Ti和SiO等许多中性和电离重金属的吸收有助于解释短波长的传输频谱。次级日食频谱显示出柔和的水特征,但在Spitzer的4.5 $ $ $ m频段中表明温度压力曲线的强大CO发射特征。我们通过自洽的凤凰模型和检索模型(Atmo $ \&$ Platon)的组合分析了运输和发射光谱。这两种光谱都非常适合太阳金属性时的化学和辐射平衡中的自洽的凤凰向前进大气模型,这增加了越来越多的证据表明,Tio/vo和Nuv重金属不透明度都是超热固定器平流层中著名的NUV光学不透明度。

Ultra-hot Jupiters with equilibrium temperature greater than 2000K are uniquely interesting targets as they provide us crucial insights into how atmospheres behave under extreme conditions. This class of giant planets receives intense radiation from their host star and usually has strongly irradiated and highly inflated atmospheres. At such high temperature, cloud formation is expected to be suppressed and thermal dissociation of water vapor could occur. We observed the ultra-hot Jupiter WASP-76b with 7 transits and 5 eclipses using the Hubble Space Telescope (HST) and $Spitzer$ for a comprehensive study of its atmospheric chemical and physical processes. We detect TiO and H$_2$O absorption in the optical and near-infrared transit spectrum. Additional absorption by a number of neutral and ionized heavy metals like Fe, Ni, Ti, and SiO help explain the short wavelength transit spectrum. The secondary eclipse spectrum shows muted water feature but a strong CO emission feature in Spitzer's 4.5 $μ$m band indicating an inverted temperature pressure profile. We analyzed both the transit and emission spectrum with a combination of self-consistent PHOENIX models and retrieval models (ATMO $\&$ PLATON). Both spectra are well fitted by the self-consistent PHOENIX forward atmosphere model in chemical and radiative equilibrium at solar metallicity, adding to the growing evidence that both TiO/VO and NUV heavy metals opacity are prominent NUV-optical opacity sources in the stratospheres of ultra-hot Jupiters.

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