Fast modulation and dithering for the NFIRAOS Pyramid Wavefront Sensor
Edward L. Chapin, David Andersen, Owen Brown, Jeffrey Crane, Adam, Densmore, Jennifer Dunn, Tim Hardy, Glen Herriot, Dan Kerley, Olivier, Lardiere, Jean-Pierre Veran

TL;DR
This paper presents a fast, synchronized modulation and dithering mechanism for the NFIRAOS Pyramid Wavefront Sensor, utilizing a piezo actuator to achieve high-frequency tip/tilt patterns for adaptive optics in the Thirty Meter Telescope.
Contribution
It introduces a novel high-speed modulation system using a piezo actuator, with detailed characterization and synchronization strategies for NFIRAOS's wavefront sensing.
Findings
Piezo actuator meets lifetime, stroke, and frequency requirements.
Open-loop operation verified with high-speed position sensing.
Synchronization strategy successfully prototyped.
Abstract
The Narrow Field InfraRed Adaptive Optics System (NFIRAOS) for the Thirty Meter Telescope (TMT) will use a natural guide star (NGS) Pyramid Wavefront Sensor (PWFS). A 32-mm diameter Fast Steering Mirror (FSM) is used to modulate the position of the NGS image around the tip of the pyramid. The mirror traces out a circular tip/tilt pattern at up to 800 Hz (the maximum operating frequency of NFIRAOS), with a diameter chosen to balance sensitivity and dynamic range. A circular dither pattern at 1/4 the modulation frequency is superimposed to facilitate optical gain measurements. The timing of this motion is synchronized precisely with individual exposures on the PWFS detector, and must also be phased with other wavefront sensors, such as Laser Guide Star Wavefront Sensors (LGSWFS) and the On-Instrument Wavefront Sensors (OIWFS) of NFIRAOS client instruments (depending on the observing…
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