行星
原行星盘
碎屑盘
天体物理学
物理
星星
天体生物学
碳纤维
地球行星
行星系
行星质量
天文
材料科学
复合数
复合材料
作者
Aditya M. Arabhavi,I. Kamp,Th. Henning,E. F. van Dishoeck,Valentin Christiaens,Danny Gasman,A. Perrin,M. Güdel,Benoît Tabone,J. S. Kanwar,L. B. F. M. Waters,I. Pascucci,M. Samland,G. Perotti,Giulio Bettoni,Sierra L. Grant,Pierre-Olivier Lagage,T. P. Ray,B. Vandenbussche,Olivier Absil
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-06-06
卷期号:384 (6700): 1086-1090
被引量:12
标识
DOI:10.1126/science.adi8147
摘要
Very low-mass stars (those <0.3 solar masses) host orbiting terrestrial planets more frequently than other types of stars, but the compositions of those planets are largely unknown. We use mid-infrared spectroscopy with the James Webb Space Telescope to investigate the chemical composition of the planet-forming disk around ISO-ChaI 147, a 0.11 solar-mass star. The inner disk has a carbon-rich chemistry: we identify emission from 13 carbon-bearing molecules including ethane and benzene. We derive large column densities of hydrocarbons indicating that we probe deep into the disk. The high carbon to oxygen ratio we infer indicates radial transport of material within the disk, which we predict would affect the bulk composition of any planets forming in the disk.
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