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Main Authors: Wiley, James, Brown, Aaron, Kupke, Renate, Cosens, Maren, Wright, Shelley A., Maire, Jerome, Magnone, Kenneth, Kress, Evan, Wang, Eric, Johnson, Chris, Larkin, James E., Fitzgerald, Michael P., Kassis, Marc, Jones, Tucker
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2409.16263
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author Wiley, James
Brown, Aaron
Kupke, Renate
Cosens, Maren
Wright, Shelley A.
Maire, Jerome
Magnone, Kenneth
Kress, Evan
Wang, Eric
Johnson, Chris
Larkin, James E.
Fitzgerald, Michael P.
Kassis, Marc
Jones, Tucker
author_facet Wiley, James
Brown, Aaron
Kupke, Renate
Cosens, Maren
Wright, Shelley A.
Maire, Jerome
Magnone, Kenneth
Kress, Evan
Wang, Eric
Johnson, Chris
Larkin, James E.
Fitzgerald, Michael P.
Kassis, Marc
Jones, Tucker
contents Liger is an adaptive optics (AO) fed imager and integral field spectrograph (IFS) designed to take advantage of the Keck All-sky Precision Adaptive-optics (KAPA) upgrade to the Keck I telescope. Liger adapts the design of the InfraRed Imaging Spectrograph (IRIS) for the Thirty Meter Telescope (TMT) to Keck by implementing a new imager and re-imaging optics. The performance of the imager is critical as it sequentially feeds the spectrograph and contains essential components such as the pupil wheel, filter wheel, and pupil viewing camera. We present the design and structural analysis of the Liger imager optical assembly including static, modal, and thermal simulations. We present the fabrication as well as the full assembly and characterization plan. The imager will be assembled bench-top in a clean room utilizing a coordinate-measuring machine (CMM) for warm alignment. To ensure optimal performance, the imager will be characterized in a test cryostat before integration with the full Liger instrument. This comprehensive approach to characterization ensures the precision and reliability of the imager, enhancing the observational capabilities of Liger and W.M. Keck Observatory.
format Preprint
id arxiv_https___arxiv_org_abs_2409_16263
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Liger at W.M. Keck Observatory: imager structural analysis, fabrication, and characterization plan
Wiley, James
Brown, Aaron
Kupke, Renate
Cosens, Maren
Wright, Shelley A.
Maire, Jerome
Magnone, Kenneth
Kress, Evan
Wang, Eric
Johnson, Chris
Larkin, James E.
Fitzgerald, Michael P.
Kassis, Marc
Jones, Tucker
Instrumentation and Methods for Astrophysics
Liger is an adaptive optics (AO) fed imager and integral field spectrograph (IFS) designed to take advantage of the Keck All-sky Precision Adaptive-optics (KAPA) upgrade to the Keck I telescope. Liger adapts the design of the InfraRed Imaging Spectrograph (IRIS) for the Thirty Meter Telescope (TMT) to Keck by implementing a new imager and re-imaging optics. The performance of the imager is critical as it sequentially feeds the spectrograph and contains essential components such as the pupil wheel, filter wheel, and pupil viewing camera. We present the design and structural analysis of the Liger imager optical assembly including static, modal, and thermal simulations. We present the fabrication as well as the full assembly and characterization plan. The imager will be assembled bench-top in a clean room utilizing a coordinate-measuring machine (CMM) for warm alignment. To ensure optimal performance, the imager will be characterized in a test cryostat before integration with the full Liger instrument. This comprehensive approach to characterization ensures the precision and reliability of the imager, enhancing the observational capabilities of Liger and W.M. Keck Observatory.
title Liger at W.M. Keck Observatory: imager structural analysis, fabrication, and characterization plan
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2409.16263