Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5444123 | Cryogenics | 2017 | 22 Pages |
Abstract
METIS, the Mid-Infrared E-ELT Imager and Spectrograph, is one of the proposed instruments in E-ELT (European Extremely Large Telescope). Its infrared detectors require multiple operating temperatures below 77Â K. Therefore, active coolers have to be deployed to provide sub-liquid-nitrogen (sub-LN2) temperature cooling. However, the sensitive imaging optical detecting system also demands very low levels of vibration. Thus, the University of Twente proposed a vibration-free cooling technique based on physical sorption. In this paper, we describe the baseline design of such a sorption-based Joule-Thomson cooler chain for the METIS instrument, that is able to deliver cooling powers of 0.4Â W at 8Â K, 1.1Â W at 25Â K and 1.4Â W at 40Â K from a 70-K heat sinking. This design is based on working fluid selection, cascading cooler stages and operating parameter optimization. Also, the performance of the resulting cooler design is analyzed.
Keywords
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Physical Sciences and Engineering
Materials Science
Electronic, Optical and Magnetic Materials
Authors
Y. Wu, D.R. Zalewski, C.H. Vermeer, H.J. Holland, B. Benthem, H.J.M. ter Brake,