Context. Ground-based high-dispersion (R ~ 100 000) spectroscopy (HDS) is proving to be a powerful technique with which to characterize extrasolar planets. The planet signal is distilled from the bright starlight, combining ral and time-differential filtering techniques. In parallel, high-contrast imaging (HCI) is developing rapidly, aimed at spatially separating the planet from the star. While HDS is limited by the overwhelming noise from the host star, HCI is limited by residual quasi-static speckles. Both techniques currently reach planet-star contrast limits down to ~10-5, albeit for very different types of planetary systems. Aims. In this work, we discuss a way to combine HDS and HCI (HDS+HCI). For a planet located at a resolvable a...
peer reviewedThe direct imaging of rocky exoplanets is one of the major science goals for upcoming l...
Context. Recently, there have been a series of detections of molecules in the atmospheres of extraso...
The Planetary Systems Imager (PSI) is a modular instrument optimized for direct imaging and characte...
Context. Ground-based high-dispersion (R - 100 000) spectroscopy (HDS) is proving to be a powerful t...
Context. Ground-based high-dispersion (R ~ 100 000) spectroscopy (HDS) is proving to be a powerful t...
Direct imaging of exoplanets presents a formidable technical challenge owing to the small angular se...
Detection and characterization of exoplanets faces challenges of smaller angular separation and high...
Studies of atmospheres of directly imaged extrasolar planets with high-resolution spectrographs have...
Combining high-contrast imaging with medium-resolution spectroscopy has been shown to significantly ...
In this thesis project, we study the field of high-dispersion spectroscopy and methods for extractin...
peer reviewedContext. Spectral differential imaging (SDI) is part of the observing strategy of curre...
Direct imaging of exoplanets has become a priority in the field of exoplanet discovery and character...
peer reviewedThe direct imaging of rocky exoplanets is one of the major science goals for upcoming l...
Context. Recently, there have been a series of detections of molecules in the atmospheres of extraso...
The Planetary Systems Imager (PSI) is a modular instrument optimized for direct imaging and characte...
Context. Ground-based high-dispersion (R - 100 000) spectroscopy (HDS) is proving to be a powerful t...
Context. Ground-based high-dispersion (R ~ 100 000) spectroscopy (HDS) is proving to be a powerful t...
Direct imaging of exoplanets presents a formidable technical challenge owing to the small angular se...
Detection and characterization of exoplanets faces challenges of smaller angular separation and high...
Studies of atmospheres of directly imaged extrasolar planets with high-resolution spectrographs have...
Combining high-contrast imaging with medium-resolution spectroscopy has been shown to significantly ...
In this thesis project, we study the field of high-dispersion spectroscopy and methods for extractin...
peer reviewedContext. Spectral differential imaging (SDI) is part of the observing strategy of curre...
Direct imaging of exoplanets has become a priority in the field of exoplanet discovery and character...
peer reviewedThe direct imaging of rocky exoplanets is one of the major science goals for upcoming l...
Context. Recently, there have been a series of detections of molecules in the atmospheres of extraso...
The Planetary Systems Imager (PSI) is a modular instrument optimized for direct imaging and characte...