Presentation + Paper
29 August 2022 Study of the LIFT focal-plane wavefront sensor for GALACSI NFM
Author Affiliations +
Abstract

The infrared low order sensor (IRLOS) upgrade project was recently launched to increase the sky coverage of GALACSI narrow-field mode (NFM).1, 2 While the baseline is to perform low-order wavefront sensing with a 2x2 Shack-Hartmann wavefront sensor (SHWFS) operating in the J+H band, a full-pupil mode was proposed to address the faintest end of the magnitude range by concentrating the photons from the full aperture in a single point spread function (PSF). In this context, we have investigated the wavefront sensing approach called the linearized focal-plane technique (LIFT). It enables the retrieval of low-order modes such as tip/tilt, defocus, astigmatism (and possibly more) from a single focal-plane PSF of a very faint natural guide star (NGS) target. LIFT is a phase diversity technique based on introducing a known amount of astigmatism into the optical path. The morphological change induced by the astigmatic shift allows encoding information about the phase aberrations into the PSF morphology.

In this work, we discuss the linearity and flux sensitivity of the method and present experimental on-sky results obtained at the VLT. We discuss the applicability of this method in realistic conditions and the limitations that this method can face while operated on-sky.
Conference Presentation
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Arseniy Kuznetsov, Sylvain Oberti, Cedric Taïssir Heritier, Cédric Plantet, Benoît Neichel, Thierry Fusco, Stefan Ströbele, and Carlos Correia "Study of the LIFT focal-plane wavefront sensor for GALACSI NFM", Proc. SPIE 12185, Adaptive Optics Systems VIII, 1218531 (29 August 2022); https://doi.org/10.1117/12.2628588
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KEYWORDS
Point spread functions

Monochromatic aberrations

Wavefront sensors

Sensors

Adaptive optics

Telescopes

Calibration

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