Published August 6, 2014 | Version Published
Book Section - Chapter Open

Combining vector-phase coronagraphy with dual-beam polarimetry

  • 1. ROR icon Leiden University
  • 2. ROR icon European Southern Observatory
  • 3. ROR icon North Carolina State University

Abstract

Utilizing the so-called vector phase of polarized light, both focal-plane coronagraphs (e.g. the Vector Vortex Coronagraph) and pupil-plane coronagraphs (e.g. the vector Apodizing Phase Plate) are powerful components for high-contrast imaging. These coronagraphs can be built and optimized with polarization techniques and liquid crystal technology, that enable patterning at the micron level and furnish broad-band performance. The contrast between the residual starlight and the (polarized) reflected light off exoplanets can be further bridged by incorporating sensitive, dual-beam imaging polarimetry. As vector-phase coronagraphs use polarizers to enhance their performance, we introduce optimally integrated solutions that combine advanced coronagraphy and polarimetry. For both the VVC and the vAPP we present polarization beam-splitting concepts, with polarization analyzers either behind or in front of the coronagraphic optics. We discuss design solutions for the implementation of polarization optics, and set the stage for a trade-off between the improvement of coronagraphic and polarimetric performance and the ensuing degradation on the high-contrast imaging performance due to wavefront errors.

Additional Information

© 2014 SPIE.

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Identifiers

Eprint ID
57674
Resolver ID
CaltechAUTHORS:20150519-145718105

Dates

Created
2015-05-19
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Updated
2021-11-10
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Series Name
Proceedings of SPIE
Series Volume or Issue Number
9147