International audienceSulfur gases substantially 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 prominent 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 ga...
Sulfur compounds have been observed in a number of planetary atmospheres throughout our solar system...
We present and validate a new network of atmospheric thermo-chemical and photo-chemical sulfur react...
International audienceHydride molecules lie at the base of interstellar chemistry, but the synthesis...
International audienceSulfur gases substantially affect the photochemistry of planetary atmospheres ...
International audienceRecent transit spectra suggest organic aerosol formation in the atmosphere of ...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
International audienceNew observing capabilities coming online over the next few years will provide ...
In order to understand planetary climate systems, modeling the properties of atmospheric aerosols is...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
International audiencePhotochemistry is a fundamental process of planetary atmospheres that regulate...
Aims. This work aims to study the unexplained sulfur depletion observed toward dense clouds and prot...
Photochemistry is a fundamental process of planetary atmospheres that regulates the atmospheric comp...
Sulfur compounds have been observed in a number of planetary atmospheres throughout our solar system...
We present and validate a new network of atmospheric thermo-chemical and photo-chemical sulfur react...
International audienceHydride molecules lie at the base of interstellar chemistry, but the synthesis...
International audienceSulfur gases substantially affect the photochemistry of planetary atmospheres ...
International audienceRecent transit spectra suggest organic aerosol formation in the atmosphere of ...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
International audienceNew observing capabilities coming online over the next few years will provide ...
In order to understand planetary climate systems, modeling the properties of atmospheric aerosols is...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
International audiencePhotochemistry is a fundamental process of planetary atmospheres that regulate...
Aims. This work aims to study the unexplained sulfur depletion observed toward dense clouds and prot...
Photochemistry is a fundamental process of planetary atmospheres that regulates the atmospheric comp...
Sulfur compounds have been observed in a number of planetary atmospheres throughout our solar system...
We present and validate a new network of atmospheric thermo-chemical and photo-chemical sulfur react...
International audienceHydride molecules lie at the base of interstellar chemistry, but the synthesis...