The goal of directly imaging Earth-like planets in the habitable zone of other stars has motivated the design of coronagraphs for use with large segmented aperture space telescopes. In order to achieve an optimal trade-off between planet light throughput and diffracted starlight suppression, we consider coronagraphs comprised of a stage of phase control implemented with deformable mirrors (or other optical elements), pupil plane apodization masks (gray scale or complex valued), and focal plane masks (either amplitude only or complex-valued, including phase only such as the vector vortex coronagraph). The optimization of these optical elements, with the goal of achieving 10 or more orders of magnitude in the suppression of on-axis (starlight...
The segmented coronagraph design and analysis (SCDA) study is a coordinated effort, led by Stuart Sh...
As the performance of coronagraphs improves, the achievable contrast is more and more dependent of t...
To appear in the Proceedings of the SPIE: Techniques and Instrumentation for Detection of Exoplanets...
The goal of directly imaging Earth-like planets in the habitable zone of other stars has motivated t...
Coronagraph instruments on future space telescopes will enable the direct detection and characteriza...
Current state-of-the-art high contrast imaging instruments take advantage of a number of elegant cor...
Phase mask coronagraphs such as the vortex coronagraph are meant to be used with the circular clear ...
Imaging planets requires instruments capable of dealing with extreme contrast ratios and that have a...
We present methods for optimizing pupil and focal plane optical elements that improve the performanc...
Context. Phase-mask coronagraphs can be seen as linear systems that spatially redistribute...
The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars...
The Habitable Exoplanet Imaging Mission concept requires an optical coronagraph that provides deep s...
The NASA exoplanet exploration program is dedicated to developing technologies for detecting and cha...
The primary science goal of the Habitable Exoplanet Imaging Mission (HabEx), one of four candidate f...
Context. With a clear circular aperture, the vortex coronagraph perfectly cancels an on-axis point s...
The segmented coronagraph design and analysis (SCDA) study is a coordinated effort, led by Stuart Sh...
As the performance of coronagraphs improves, the achievable contrast is more and more dependent of t...
To appear in the Proceedings of the SPIE: Techniques and Instrumentation for Detection of Exoplanets...
The goal of directly imaging Earth-like planets in the habitable zone of other stars has motivated t...
Coronagraph instruments on future space telescopes will enable the direct detection and characteriza...
Current state-of-the-art high contrast imaging instruments take advantage of a number of elegant cor...
Phase mask coronagraphs such as the vortex coronagraph are meant to be used with the circular clear ...
Imaging planets requires instruments capable of dealing with extreme contrast ratios and that have a...
We present methods for optimizing pupil and focal plane optical elements that improve the performanc...
Context. Phase-mask coronagraphs can be seen as linear systems that spatially redistribute...
The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars...
The Habitable Exoplanet Imaging Mission concept requires an optical coronagraph that provides deep s...
The NASA exoplanet exploration program is dedicated to developing technologies for detecting and cha...
The primary science goal of the Habitable Exoplanet Imaging Mission (HabEx), one of four candidate f...
Context. With a clear circular aperture, the vortex coronagraph perfectly cancels an on-axis point s...
The segmented coronagraph design and analysis (SCDA) study is a coordinated effort, led by Stuart Sh...
As the performance of coronagraphs improves, the achievable contrast is more and more dependent of t...
To appear in the Proceedings of the SPIE: Techniques and Instrumentation for Detection of Exoplanets...