International audienceContext. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an expanding research field which provides information on the chemical composition, thermal structure, atmospheric dynamics, and orbital velocity of exoplanets. Aims: In this work, we aim to detect the light reflected by the exoplanet 51 Peg b by employing optical high-resolution spectroscopy. Methods: To detect the light reflected by the planetary dayside, we used optical High Accuracy Radial velocity Planet Searcher and High Accuracy Radial velocity Planet Searcher for the Northern hemisphere spectra taken near the superior conjunction of the planet, when the flux contrast between the planet and the star is maximum. To sea...
Context. The direct imaging of exoplanets in reflected starlight will represent a major advance in t...
The spectrum of an exoplanet reveals the physical, chemical, and biological processes that have shap...
International audienceWe observed the hot Jupiter HAT-P-32b (also known as HAT-P-32Ab) to determine ...
International audienceContext. The analysis of exoplanetary atmospheres by means of high-resolution ...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
International audienceContext. The extreme contrast ratios between stars and their planets at optica...
International audienceContext. The detection of reflected light from an exoplanet is a difficult tec...
A large number of exoplanets has been observed in the last three decades, but still for most of them...
In this paper, we present ground-based high-resolution spectroscopy of 51 Pegasi using CRIRES at the...
Context. Recently, there have been a series of detections of molecules in the atmospheres of extraso...
Context. High-resolution spectroscopy (R ≥ 20 000) at near-infrared wavelengths can be used to inves...
Context. High-resolution spectroscopy (R 20 000) at near-infrared wavelengths can be used to investi...
Context. High-resolution spectroscopy (R 20 000) at near-infrared wavelengths can be used to invest...
Context. The direct imaging of exoplanets in reflected starlight will represent a major advance in t...
The spectrum of an exoplanet reveals the physical, chemical, and biological processes that have shap...
International audienceWe observed the hot Jupiter HAT-P-32b (also known as HAT-P-32Ab) to determine ...
International audienceContext. The analysis of exoplanetary atmospheres by means of high-resolution ...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
Context. The analysis of exoplanetary atmospheres by means of high-resolution spectroscopy is an exp...
International audienceContext. The extreme contrast ratios between stars and their planets at optica...
International audienceContext. The detection of reflected light from an exoplanet is a difficult tec...
A large number of exoplanets has been observed in the last three decades, but still for most of them...
In this paper, we present ground-based high-resolution spectroscopy of 51 Pegasi using CRIRES at the...
Context. Recently, there have been a series of detections of molecules in the atmospheres of extraso...
Context. High-resolution spectroscopy (R ≥ 20 000) at near-infrared wavelengths can be used to inves...
Context. High-resolution spectroscopy (R 20 000) at near-infrared wavelengths can be used to investi...
Context. High-resolution spectroscopy (R 20 000) at near-infrared wavelengths can be used to invest...
Context. The direct imaging of exoplanets in reflected starlight will represent a major advance in t...
The spectrum of an exoplanet reveals the physical, chemical, and biological processes that have shap...
International audienceWe observed the hot Jupiter HAT-P-32b (also known as HAT-P-32Ab) to determine ...