Published July 22, 2016 | Version Published
Book Section - Chapter Open

Apodized vortex coronagraph designs for segmented aperture telescopes

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon Jet Propulsion Lab
  • 3. ROR icon Space Telescope Science Institute

Contributors

Abstract

Current state-of-the-art high contrast imaging instruments take advantage of a number of elegant coronagraph designs to suppress starlight and image nearby faint objects, such as exoplanets and circumstellar disks. The ideal performance and complexity of the optical systems depends strongly on the shape of the telescope aperture. Unfortunately, large primary mirrors tend to be segmented and have various obstructions, which limit the performance of most conventional coronagraph designs. We present a new family of vortex coronagraphs with numerically-optimized gray-scale apodizers that provide the sensitivity needed to directly image faint exoplanets with large, segmented aperture telescopes, including the Thirty Meter Telescope (TMT) as well as potential next-generation space telescopes.

Additional Information

© 2016 SPIE. Society of Photo-Optical Instrumentation Engineers. The authors thank Brunella Carlomagno and Olivier Absil from the University of Liège (ULg), Alexis Carlotti from Institute of Planetology and Astrophysics of Grenoble (IPAG), and Christian Delacroix from Cornell University for many fruitful discussions regarding coronagraph performance and optimization. This work was supported by the Exoplanet Exploration Program (ExEP), Jet Propulsion Laboratory, California Institute of Technology, under contract to the National Aeronautics and Space Administration (NASA).

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Identifiers

Eprint ID
72673
Resolver ID
CaltechAUTHORS:20161208-143555472

Funding

NASA/JPL/Caltech

Dates

Created
2016-12-09
Created from EPrint's datestamp field
Updated
2021-11-11
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Caltech Custom Metadata

Series Name
Proceedings of SPIE
Series Volume or Issue Number
9912