Coronagraph-based wavefront sensors for the high Strehl regime

Fuente: arXiv
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Autores principales: Chambouleyron, Vincent, Wallace, J. Kent, Jensen-Clem, Rebecca, Macintosh, Bruce
Formato: Preprint
Publicado: 2024
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author Chambouleyron, Vincent
Wallace, J. Kent
Jensen-Clem, Rebecca
Macintosh, Bruce
author_facet Chambouleyron, Vincent
Wallace, J. Kent
Jensen-Clem, Rebecca
Macintosh, Bruce
contents A crucial component of the high-contrast instrumental chain in astronomy is the wavefront sensor (WFS). A key property of this component is its sensitivities, which reflect its ability to efficiently use incoming photons to encode the phase aberrations. This paper introduces a new class of highly sensitive wavefront sensors that approach the fundamental sensitivity limits dictated by physics. Assuming a high Strehl regime, we define what linear operator is describing the ideal WFS that would achieve maximum sensitivity. We then show that there is a substantial similarity between this ideal WFS and the second-order ideal coronagraph. Leveraging the exhibited link between ideal wavefront sensing and coronagraphy, we propose a novel WFS concept based on high-performance coronagraphic architecture : the bivortex WFS. This sensor employs charge-2 vortex masks. Simulations for an ideal system demonstrate that this sensor achieves unprecedented sensitivity, even surpassing the highly sensitive Zernike WFS class (especially for low spatial frequencies), while paving the way for new high-contrast architectures integrating simultaneous sensing and coronagraphy.
format Preprint
id arxiv_https___arxiv_org_abs_2410_18000
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Coronagraph-based wavefront sensors for the high Strehl regime
Chambouleyron, Vincent
Wallace, J. Kent
Jensen-Clem, Rebecca
Macintosh, Bruce
Instrumentation and Methods for Astrophysics
A crucial component of the high-contrast instrumental chain in astronomy is the wavefront sensor (WFS). A key property of this component is its sensitivities, which reflect its ability to efficiently use incoming photons to encode the phase aberrations. This paper introduces a new class of highly sensitive wavefront sensors that approach the fundamental sensitivity limits dictated by physics. Assuming a high Strehl regime, we define what linear operator is describing the ideal WFS that would achieve maximum sensitivity. We then show that there is a substantial similarity between this ideal WFS and the second-order ideal coronagraph. Leveraging the exhibited link between ideal wavefront sensing and coronagraphy, we propose a novel WFS concept based on high-performance coronagraphic architecture : the bivortex WFS. This sensor employs charge-2 vortex masks. Simulations for an ideal system demonstrate that this sensor achieves unprecedented sensitivity, even surpassing the highly sensitive Zernike WFS class (especially for low spatial frequencies), while paving the way for new high-contrast architectures integrating simultaneous sensing and coronagraphy.
title Coronagraph-based wavefront sensors for the high Strehl regime
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2410.18000