Imaging Earth-like exoplanets with future space telescopes will require a coronagraph instrument that is capable of creating a dark zone in the starlight at the image plane that is ten orders of magnitude fainter than the off-axis image of the host star. What is more, the coronagraph must simultaneously provide a stable dark zone and high throughput over the angular separations that correspond to habitable zones around nearby Sun-like stars (~10-100 milliarcseconds). Since the pupils of most large-aperture space telescope architectures are likely to be obstructed by secondary mirrors, spider support structures, and gaps between mirror segments, the coronagraph optics must also be specially tailored to passively suppress starlight diffracted...
The High Contrast Spectroscopy Testbed for Segmented Telescopes (HCST) at Caltech is aimed at fillin...
To directly image and characterize exoplanets, starlight suppression systems rely on coronagraphs to...
International audienceContext. High-contrast imaging of exoplanets around nearby stars with future l...
Imaging Earth-like exoplanets with future space telescopes will require a coronagraph instrument tha...
Direct imaging of an Earth-like exoplanet requires starlight suppression with a contrast ratio on th...
International audienceContext. The apodized-pupil Lyot coronagraph is one of the most advanced starl...
Current state-of-the-art high contrast imaging instruments take advantage of a number of elegant cor...
High-contrast imaging is the primary path to the direct detection and characterization of Earth-like...
Context. The apodized-pupil Lyot coronagraph is one of the most advanced starlight cancellation conc...
The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars...
International audienceWe present recent laboratory results demonstrating high-contrast coronagraphy ...
International audienceSegmented telescopes are a possible approach to enable large-aperture space te...
The High-Contrast Spectroscopy Testbed for Segmented Telescopes (HCST) in the Exoplanet Technology L...
The goal of the High-contrast imager for Complex Aperture Telescopes (HiCAT) testbed is to demonstra...
Coronagraphy has recently been an extremely active field of research, with several high performance ...
The High Contrast Spectroscopy Testbed for Segmented Telescopes (HCST) at Caltech is aimed at fillin...
To directly image and characterize exoplanets, starlight suppression systems rely on coronagraphs to...
International audienceContext. High-contrast imaging of exoplanets around nearby stars with future l...
Imaging Earth-like exoplanets with future space telescopes will require a coronagraph instrument tha...
Direct imaging of an Earth-like exoplanet requires starlight suppression with a contrast ratio on th...
International audienceContext. The apodized-pupil Lyot coronagraph is one of the most advanced starl...
Current state-of-the-art high contrast imaging instruments take advantage of a number of elegant cor...
High-contrast imaging is the primary path to the direct detection and characterization of Earth-like...
Context. The apodized-pupil Lyot coronagraph is one of the most advanced starlight cancellation conc...
The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars...
International audienceWe present recent laboratory results demonstrating high-contrast coronagraphy ...
International audienceSegmented telescopes are a possible approach to enable large-aperture space te...
The High-Contrast Spectroscopy Testbed for Segmented Telescopes (HCST) in the Exoplanet Technology L...
The goal of the High-contrast imager for Complex Aperture Telescopes (HiCAT) testbed is to demonstra...
Coronagraphy has recently been an extremely active field of research, with several high performance ...
The High Contrast Spectroscopy Testbed for Segmented Telescopes (HCST) at Caltech is aimed at fillin...
To directly image and characterize exoplanets, starlight suppression systems rely on coronagraphs to...
International audienceContext. High-contrast imaging of exoplanets around nearby stars with future l...