The technique of transmission spectroscopy allows us to constrain the chemical composition of the atmospheres of transiting exoplanets. It relies on very high signal-to-noise spectroscopic (or spectrophotometric) observations and is thus most suited for bright exoplanet host stars. In the era of the Transiting Exoplanet Survey Satellite, Next Generation Space Telescope, and PLAnetary Transits and Oscillations of stars (PLATO), more and more suitable targets, even for mid-sized telescopes, are discovered. Furthermore, a wealth of archival data is available that could become a basis for long-term monitoring of exo-atmospheres. We analyzed archival High Accuracy Radial velocity Planet Searcher (HARPS) spectroscopic time series of four host sta...
We present high-resolution optical transmission spectroscopy of two sub-Saturn mass transiting exopl...
Planet formation processes or evolution mechanisms are surmised to be at the origin of the hot Neptu...
Context. WASP-121 b is a hot Jupiter that was recently found to possess rich emission (day side) and...
High-resolution optical spectroscopy is a powerful tool to characterise exoplanetary atmospheres fro...
International audienceWASP-127b is one of the puffiest exoplanets found to date, with a mass of only...
International audienceContext. WASP-121 b is a hot Jupiter that was recently found to possess rich e...
Context. WASP-121 b is a hot Jupiter that was recently found to possess rich emission (day side) and...
International audienceHigh‐resolution optical spectroscopy during the transit of HD 189733b, a proto...
High-resolution optical spectroscopy during the transit of HD 189733b, a prototypical hot Jupiter, a...
The chemical abundances of exoplanet atmospheres may provide valuable information about the bulk com...
Aims. We set out to study the atmosphere of WASP-80b, a warm inflated gas giant with an equilibrium ...
Exoplanets with relatively clear atmospheres are prime targets for detailed studies of chemical comp...
High-resolution optical spectroscopy is a powerful tool to characterise exoplanetary atmospheres fro...
Since the first discovery of a transiting planet in 2000, transmission spectroscopy has proved essen...
We present high-resolution optical transmission spectroscopy of two sub-Saturn mass transiting exopl...
Planet formation processes or evolution mechanisms are surmised to be at the origin of the hot Neptu...
Context. WASP-121 b is a hot Jupiter that was recently found to possess rich emission (day side) and...
High-resolution optical spectroscopy is a powerful tool to characterise exoplanetary atmospheres fro...
International audienceWASP-127b is one of the puffiest exoplanets found to date, with a mass of only...
International audienceContext. WASP-121 b is a hot Jupiter that was recently found to possess rich e...
Context. WASP-121 b is a hot Jupiter that was recently found to possess rich emission (day side) and...
International audienceHigh‐resolution optical spectroscopy during the transit of HD 189733b, a proto...
High-resolution optical spectroscopy during the transit of HD 189733b, a prototypical hot Jupiter, a...
The chemical abundances of exoplanet atmospheres may provide valuable information about the bulk com...
Aims. We set out to study the atmosphere of WASP-80b, a warm inflated gas giant with an equilibrium ...
Exoplanets with relatively clear atmospheres are prime targets for detailed studies of chemical comp...
High-resolution optical spectroscopy is a powerful tool to characterise exoplanetary atmospheres fro...
Since the first discovery of a transiting planet in 2000, transmission spectroscopy has proved essen...
We present high-resolution optical transmission spectroscopy of two sub-Saturn mass transiting exopl...
Planet formation processes or evolution mechanisms are surmised to be at the origin of the hot Neptu...
Context. WASP-121 b is a hot Jupiter that was recently found to possess rich emission (day side) and...