The Vector Vortex Coronagraph is a phase-based coronagraph, one of the most efficient in terms of inner working angle, throughput, discovery space, contrast, and simplicity. Using liquid-crystal polymer technology, this new coronagraph has recently been the subject of lab demonstrations in the near-infrared, visible and was also used on sky at the Palomar observatory in the H and K bands (1.65 and 2.2 μm, respectively) to image the brown dwarf companion to HR 7672, and the three extra-solar planets around HR 8799. However, despite these recent successes, the Vector Vortex Coronagraph is, as are most coronagraphs, sensitive to the central obscuration and secondary support structures, low-order aberrations (tip-tilt, focus, etc), bandwidth (c...
The optical vortex coronagraph has great potential for enabling high-contrast observations very clos...
The Vector Vortex Coronagraph (VVC) is one of the most attractive new-generation coronagraphs for gr...
The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars...
The Vector Vortex Coronagraph is a phase-based coronagraph, one of the most efficient in terms of in...
The Vector Vortex Coronagraph is a phase-based coronagraph, one of the most efficient in terms of in...
High-contrast coronagraphy will be needed to image and characterize faint extrasolar planetary syste...
We report the status of JPL and JDSU ongoing technological developments and contrast results of the ...
The Vector Vortex Coronagraph (VVC) is an attractive internal coronagraph solution to image and char...
Vortex coronagraphs are an attractive solution for imaging exoplanets with future space telescopes d...
Small-angle coronagraphs are key components for future instruments being developed for the ELTs. Bec...
Utilizing the so-called vector phase of polarized light, both focal-plane coronagraphs (e.g. the Vec...
The future Habitable Worlds Observatory aims to characterize the atmospheres of rocky exoplanets aro...
Small angle coronagaphy, such as the vortex phase mask, is a key scientific driver for the coming g...
The vortex coronagraph has already enabled high-contrast observations very close to bright stars on ...
The vector vortex coronagraph is an instrument designed for direct detection and spectroscopy of exo...
The optical vortex coronagraph has great potential for enabling high-contrast observations very clos...
The Vector Vortex Coronagraph (VVC) is one of the most attractive new-generation coronagraphs for gr...
The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars...
The Vector Vortex Coronagraph is a phase-based coronagraph, one of the most efficient in terms of in...
The Vector Vortex Coronagraph is a phase-based coronagraph, one of the most efficient in terms of in...
High-contrast coronagraphy will be needed to image and characterize faint extrasolar planetary syste...
We report the status of JPL and JDSU ongoing technological developments and contrast results of the ...
The Vector Vortex Coronagraph (VVC) is an attractive internal coronagraph solution to image and char...
Vortex coronagraphs are an attractive solution for imaging exoplanets with future space telescopes d...
Small-angle coronagraphs are key components for future instruments being developed for the ELTs. Bec...
Utilizing the so-called vector phase of polarized light, both focal-plane coronagraphs (e.g. the Vec...
The future Habitable Worlds Observatory aims to characterize the atmospheres of rocky exoplanets aro...
Small angle coronagaphy, such as the vortex phase mask, is a key scientific driver for the coming g...
The vortex coronagraph has already enabled high-contrast observations very close to bright stars on ...
The vector vortex coronagraph is an instrument designed for direct detection and spectroscopy of exo...
The optical vortex coronagraph has great potential for enabling high-contrast observations very clos...
The Vector Vortex Coronagraph (VVC) is one of the most attractive new-generation coronagraphs for gr...
The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars...