International audienceContext. With a clear circular aperture, the vortex coronagraph perfectly cancels an on-axis point source and offers a 0.9 or 1.75λ/D inner working angle for topological charge 2 or 4, respectively. Current and near-future large telescopes are on-axis, however, and the diffraction effects of the central obscuration, and the secondary supports are strong enough to prevent the detection of companions 10-3-10-5 as bright as, or fainter than, their host star. Aims: Recent advances show that a ring apodizer can restore the performance of this coronagraph by compensating for the diffraction effects of a circular central obscuration in a 1D modeling of the pupil. Our aim is to extend this work and design optimal apodizers fo...
Context. The vortex coronagraph is an optical instrument that precisely removes on-axis starlight al...
Context. The vortex coronagraph is an optical instrument that precisely removes on-axis starlight al...
In the context of high dynamic range imaging, this study presents a breakthrough for the understandi...
International audienceContext. With a clear circular aperture, the vortex coronagraph perfectly canc...
Context. With a clear circular aperture, the vortex coronagraph perfectly cancels an on-ax...
Context. With a clear circular aperture, the vortex coronagraph perfectly cancels an on-axis point s...
Phase mask coronagraphs such as the vortex coronagraph are meant to be used with the circular clear ...
International audienceObstructions due to large secondary mirrors, primary mirror segmentation, and ...
The vortex coronagraph (VC) is a new generation small inner working angle (IWA) coronagraph currentl...
Here we present two simple concepts to make the vortex coronagraph (VC) immune to heavily obscured a...
We present methods for optimizing pupil and focal plane optical elements that improve the performanc...
Here we present preliminary results of the integration of two recently proposed vortex coronagraph (...
Current state-of-the-art high contrast imaging instruments take advantage of a number of elegant cor...
Phase masks coronagraphs can be seen as linear systems that spatially redistribute, in the pupil pla...
Imaging planets requires instruments capable of dealing with extreme contrast ratios and that have a...
Context. The vortex coronagraph is an optical instrument that precisely removes on-axis starlight al...
Context. The vortex coronagraph is an optical instrument that precisely removes on-axis starlight al...
In the context of high dynamic range imaging, this study presents a breakthrough for the understandi...
International audienceContext. With a clear circular aperture, the vortex coronagraph perfectly canc...
Context. With a clear circular aperture, the vortex coronagraph perfectly cancels an on-ax...
Context. With a clear circular aperture, the vortex coronagraph perfectly cancels an on-axis point s...
Phase mask coronagraphs such as the vortex coronagraph are meant to be used with the circular clear ...
International audienceObstructions due to large secondary mirrors, primary mirror segmentation, and ...
The vortex coronagraph (VC) is a new generation small inner working angle (IWA) coronagraph currentl...
Here we present two simple concepts to make the vortex coronagraph (VC) immune to heavily obscured a...
We present methods for optimizing pupil and focal plane optical elements that improve the performanc...
Here we present preliminary results of the integration of two recently proposed vortex coronagraph (...
Current state-of-the-art high contrast imaging instruments take advantage of a number of elegant cor...
Phase masks coronagraphs can be seen as linear systems that spatially redistribute, in the pupil pla...
Imaging planets requires instruments capable of dealing with extreme contrast ratios and that have a...
Context. The vortex coronagraph is an optical instrument that precisely removes on-axis starlight al...
Context. The vortex coronagraph is an optical instrument that precisely removes on-axis starlight al...
In the context of high dynamic range imaging, this study presents a breakthrough for the understandi...