系外行星
薄雾
天体生物学
硫化氢
硫黄
背景(考古学)
大气(单位)
羰基硫醚
化学
氢
化学物理
行星
物理
天体物理学
气象学
有机化学
地质学
古生物学
作者
Chao He,Sarah M. Hörst,Nikole K. Lewis,Xinting Yu,Julianne I. Moses,Patricia McGuiggan,Mark S. Marley,Eliza M.-R. Kempton,Sarah E. Moran,Caroline Morley,V. Vuitton
出处
期刊:Nature Astronomy
[Springer Nature]
日期:2020-04-06
卷期号:4 (10): 986-993
被引量:13
标识
DOI:10.1038/s41550-020-1072-9
摘要
Sulfur gases significantly affect the photochemistry of planetary atmospheres in our Solar System, and are expected to be important components in exoplanet atmospheres. However, sulfur photochemistry in the context of exoplanets is poorly understood due to a lack of chemical-kinetics information for sulfur species under relevant conditions. Here, we study the photochemical role of hydrogen sulfide (H2S) in warm CO2-rich exoplanet atmospheres (800 K) by carrying out laboratory simulations. We find that H2S plays a significant role in photochemistry, even when present in the atmosphere at relatively low concentrations (1.6%). It participates in both gas and solid phase chemistry, leading to the formation of other sulfur gas products (CH3SH/SO, C2H4S/OCS, SO2/S2, and CS2) and to an increase in solid haze particle production and compositional complexity. Our study shows that we may expect thicker haze with small particle sizes (20 to 140 nm) for warm CO2-rich exoplanet atmospheres that possess H2S.
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