The carbon-to-oxygen ratio (C/O) in a planet provides critical information about its primordial origins and subsequent evolution. A primordial C/O greater than 0.8 causes a carbide-dominated interior, as opposed to the silicate-dominated composition found on Earth; the atmosphere can also differ from those in the Solar System. The solar C/O is 0.54 (ref. 3). Here we report an analysis of dayside multi-wavelength photometry of the transiting hot-Jupiter WASP-12b (ref. 6) that reveals C/O≥1 in its atmosphere. The atmosphere is abundant in CO. It is depleted in water vapour and enhanced in methane, each by more than two orders of magnitude compared to a solar-abundance chemical-equilibrium model at the expected temperatures. We also find that ...
We find evidence for a strong thermal inversion in the dayside atmosphere of the highly irradiated h...
Accurately estimating the C/O ratio of hot Jupiter atmospheres is a promising pathway towards unders...
Measurements of the atmospheric carbon (C) and oxygen (O) relative to hydrogen (H) in hot Jupiters (...
The carbon-to-oxygen ratio (C/O) in a planet provides critical information about its primordial orig...
The carbon-to-oxygen ratio (C/O) in a planet provides critical information about its primordial orig...
The carbon-to-oxygen ratio (C/O) in a planet provides critical information about its primordial orig...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
The recent inference of a carbon-rich atmosphere, with C/O 1, in the hot Jupiter WASP-12b motivates...
Context. Observations of ultra-hot Jupiters indicate the existence of thermal inversion in their atm...
Detailed characterization of exoplanets has begun to yield measurements of their atmospheric propert...
We find evidence for a strong thermal inversion in the dayside atmosphere of the highly irradiated h...
Accurately estimating the C/O ratio of hot Jupiter atmospheres is a promising pathway towards unders...
Measurements of the atmospheric carbon (C) and oxygen (O) relative to hydrogen (H) in hot Jupiters (...
The carbon-to-oxygen ratio (C/O) in a planet provides critical information about its primordial orig...
The carbon-to-oxygen ratio (C/O) in a planet provides critical information about its primordial orig...
The carbon-to-oxygen ratio (C/O) in a planet provides critical information about its primordial orig...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
International audienceContext. Observations of ultra-hot Jupiters indicate the existence of thermal ...
The recent inference of a carbon-rich atmosphere, with C/O 1, in the hot Jupiter WASP-12b motivates...
Context. Observations of ultra-hot Jupiters indicate the existence of thermal inversion in their atm...
Detailed characterization of exoplanets has begun to yield measurements of their atmospheric propert...
We find evidence for a strong thermal inversion in the dayside atmosphere of the highly irradiated h...
Accurately estimating the C/O ratio of hot Jupiter atmospheres is a promising pathway towards unders...
Measurements of the atmospheric carbon (C) and oxygen (O) relative to hydrogen (H) in hot Jupiters (...