While the concept of vortex coronagraphy dates back to 2005, the first science-grade Annular Groove Phase Masks (AGPM), working in the thermal infrared regime, have been installed at the VLT only in 2012. They are now also equipping the Keck telescope and the Large Binocular Telescope, and will soon be at the core of more ground-based high-contrast imaging instruments. In this seminar, I will shortly review the technology development undertaken over the last 10 years, and describe the on-sky operations and performance of the vortex coronagraph. I will then present the main scientific results obtained since 2012, and explain how we have recently adapted deep learning techniques to the problem of post-processing in high-contrast imaging. I wi...
Here we present the installation and successful commissioning of an L'-band Annular Groove Phase Mas...
We report the status of JPL and JDSU ongoing technological developments and contrast results of the ...
The vortex coronagraph has already enabled high-contrast observations very close to bright stars on ...
For several years, we have been developing vortex phase masks based on sub-wavelength gratings, know...
Since its first light at the VLT in 2012, the Annular Groove Phase Mask (AGPM) has been used to impl...
Vortex coronagraphs are among the most promising solutions to perform high contrast imaging at small...
In November 2012, we installed an L-band annular groove phase mask (AGPM) vector vortex coronagraph ...
On March 2015 an L'-band vortex coronagraph based on an Annular Groove Phase Mask made up of a diamo...
Context. Coronagraphy is a powerful technique to achieve high contrast imaging, hence to image faint...
Here we present the installation and successful commissioning of an L'-band Annular Groove Phase Mas...
The Vector Vortex Coronagraph (VVC) is one of the most attractive new-generation coronagraphs for gr...
Coronagraphy is a high-contrast imaging technique aiming to reduce the blinding glare of a star in ...
Since its first light at the VLT in 2012, the Annular Groove Phase Mask (AGPM) has been used to impl...
Coronagraphy is a high-contrast imaging technique that aims to reduce the blinding glare of a star t...
Since 2005, we have been developing at the University of Liège an implementation of the vector vorte...
Here we present the installation and successful commissioning of an L'-band Annular Groove Phase Mas...
We report the status of JPL and JDSU ongoing technological developments and contrast results of the ...
The vortex coronagraph has already enabled high-contrast observations very close to bright stars on ...
For several years, we have been developing vortex phase masks based on sub-wavelength gratings, know...
Since its first light at the VLT in 2012, the Annular Groove Phase Mask (AGPM) has been used to impl...
Vortex coronagraphs are among the most promising solutions to perform high contrast imaging at small...
In November 2012, we installed an L-band annular groove phase mask (AGPM) vector vortex coronagraph ...
On March 2015 an L'-band vortex coronagraph based on an Annular Groove Phase Mask made up of a diamo...
Context. Coronagraphy is a powerful technique to achieve high contrast imaging, hence to image faint...
Here we present the installation and successful commissioning of an L'-band Annular Groove Phase Mas...
The Vector Vortex Coronagraph (VVC) is one of the most attractive new-generation coronagraphs for gr...
Coronagraphy is a high-contrast imaging technique aiming to reduce the blinding glare of a star in ...
Since its first light at the VLT in 2012, the Annular Groove Phase Mask (AGPM) has been used to impl...
Coronagraphy is a high-contrast imaging technique that aims to reduce the blinding glare of a star t...
Since 2005, we have been developing at the University of Liège an implementation of the vector vorte...
Here we present the installation and successful commissioning of an L'-band Annular Groove Phase Mas...
We report the status of JPL and JDSU ongoing technological developments and contrast results of the ...
The vortex coronagraph has already enabled high-contrast observations very close to bright stars on ...