Cryogenic photogrammetry and radiometry for the James Webb Space Telescope microshutters
Author(s) -
Victor J. Chambers,
Peter A. Morey,
Barbara Zukowski,
A. Kutyrev,
Nicholas R. Collins,
David A. Rapchun,
Nargess Memarsadeghi,
Samuel H. Moseley,
Leroy Sparr,
Peter Blake
Publication year - 2012
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 - 10.1117/12.924171
Subject(s) - james webb space telescope , shutter , optics , spectrometer , telescope , photogrammetry , remote sensing , cryostat , computer science , physics , computer vision , geology , superconductivity , quantum mechanics
The James Webb Space Telescope (JWST) relies on several innovations to complete its five year mission. One vital technology is microshutters, the programmable field selectors that enable the Near Infrared Spectrometer (NIRSpec) to perform multi-object spectroscopy. Mission success depends on acquiring spectra from large numbers of galaxies by positioning shutter slits over faint targets. Precise selection of faint targets requires field selectors that are both high in contrast and stable in position. We have developed test facilities to evaluate microshutter contrast and alignment stability at their 35K operating temperature. These facilities used a novel application of image registration algorithms to obtain non-contact, sub-micron measurements in cryogenic conditions. The cryogenic motion of the shutters was successfully characterized. Optical results also demonstrated that shutter contrast far exceeds the NIRSpec requirements. Our test program has concluded with the delivery of a flight-qualified field selection subsystem to the NIRSpec bench.
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