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The adaptive optics beam steering mirror for the GMT Integral-Field Spectrograph, GMTIFS
Author(s) -
R. Sharp,
Robert Boz,
John Hart,
Gabe Bloxham,
Dave Bundy,
Jack Davis,
Peter J. McGregor,
Joseph R. Nielson,
Colin Vest,
P. Young
Publication year - 2014
Publication title -
proceedings of spie, the international society for optical engineering/proceedings of spie
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.192
H-Index - 176
eISSN - 1996-756X
pISSN - 0277-786X
DOI - 10.1117/12.2054835
Subject(s) - adaptive optics , starlight , wavefront , optics , spectrograph , beam steering , computer science , relay , deformable mirror , telescope , wavefront sensor , integral field spectrograph , physics , beam (structure) , computer vision , stars , power (physics) , quantum mechanics , astronomy , spectral line
To achieve the high adaptive optics sky coverage necessary to allow the GMT Integral-Field Spectrograph to access key scientific targets, the on-instrument adaptive-optics wavefront-sensing system must patrol the full 180 arcsecond diameter guide field passed to the instrument. Starlight must be held stationary on the wavefront sensor (accounting for flexure, differential refraction and non-sidereal tracking rates) to ~ 1 milliarcsecond to provide the stable position reference signal for deep AO observations and avoid introducing image blur. Hence a tight tolerance of 1/180,000 is placed on the positioning and encoding accuracy for the cryogenic On-Instrument Wave-Front Sensor feed. GMTIFS will achieve this requirement using a beam-steering mirror system as an optical relay for starlight from across the accessible guide field. The system avoids hysteresis and backlash by eliminating friction and avoiding gearing while maintaining high setting speed and accuracy with a precision feedback loop. Here we present the design of the relay system and the technical solution deployed to meet the challenging specifications for drive rate, accuracy and positional encoding of the beam-steering system.

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