On-sky verification of Fast and Furious focal-plane wavefront sensing: Moving forward toward controlling the island effect at Subaru/SCExAO
Steven P. Bos, S\'ebastien Vievard, Michael J. Wilby, Frans Snik,, Julien Lozi, Olivier Guyon, Barnaby R.M. Norris, Nemanja Jovanovic, Frantz, Martinache, Jean-Fran\c{c}ois Sauvage, Christoph U. Keller

TL;DR
This study demonstrates that the Fast and Furious focal-plane wavefront sensing algorithm can effectively measure and correct the island effect and low-wind effect in high-contrast imaging at Subaru, improving PSF quality under challenging atmospheric conditions.
Contribution
The paper presents the first on-sky verification of the F&F algorithm for correcting the island effect and low-wind effect in high-contrast imaging systems.
Findings
F&F corrected LWE phase screens to >90% Strehl ratio
F&F improved PSF symmetry during challenging atmospheric conditions
Simultaneous optical and NIR PSF corrections demonstrated within SCExAO
Abstract
High-contrast imaging (HCI) observations of exoplanets can be limited by the island effect (IE). On the current generation of telescopes, the IE becomes a severe problem when the ground wind speed is below a few meters per second. This is referred to as the low-wind effect (LWE). The LWE severely distorts the point spread function (PSF), significantly lowering the Strehl ratio and degrading the contrast. In this article, we aim to show that the focal-plane wavefront sensing (FPWFS) algorithm, Fast and Furious (F&F), can be used to measure and correct the IE/LWE. We deployed the algorithm on the SCExAO HCI instrument at the Subaru Telescope using the internal near-infrared camera in H-band. We tested F&F with the internal source, and it was deployed on-sky to test its performance with the full end-to-end system and atmospheric turbulence. The performance of the algorithm was evaluated by…
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