The Vector-APP: a Broadband Apodizing Phase Plate that yields Complementary PSFs
Frans Snik, Gilles Otten, Matthew Kenworthy, Matthew Miskiewicz,, Michael Escuti, Christopher Packham, Johanan Codona

TL;DR
The paper introduces a broadband vector-APP device that produces complementary PSFs for high-contrast imaging and wavefront sensing, utilizing liquid crystal technology for achromatic phase manipulation.
Contribution
It presents a novel broadband vector-APP design that creates two complementary PSFs with swapped dark zones, enabling improved high-contrast and polarimetric imaging.
Findings
Prototype demonstrates effective complementary PSFs.
Device achieves broadband operation with liquid crystal layers.
Potential for integrated wavefront sensing and polarimetry.
Abstract
The apodizing phase plate (APP) is a solid-state pupil optic that clears out a D-shaped area next to the core of the ensuing PSF. To make the APP more efficient for high-contrast imaging, its bandwidth should be as large as possible, and the location of the D-shaped area should be easily swapped to the other side of the PSF. We present the design of a broadband APP that yields two PSFs that have the opposite sides cleared out. Both properties are enabled by a half-wave liquid crystal layer, for which the local fast axis orientation over the pupil is forced to follow the required phase structure. For each of the two circular polarization states, the required phase apodization is thus obtained, and, moreover, the PSFs after a quarter-wave plate and a polarizing beam-splitter are complementary due to the antisymmetric nature of the phase apodization. The device can be achromatized in the…
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