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Titlebook: Next Generation Infrared Space Observatory; S. J. Bell Burnell,J. K. Davies,R. S. Stobie Book 1992 Springer Science+Business Media Dordrec

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楼主: antithetic
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Optical Design and Testing of a Fast, Large Aperture, Infrared Space Telescope,um aperture 2.5 metre with an F/1.2 primary and wavelength coverage from λ = 2 to at least 40 .m, and possibly to 100 .m. Compactness, low thermal emission from the optics and structure, diffraction limited imaging at λ = 2 .m, and sensitivity to misalignment aberrations and manufacturing errors wer
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Closed Cycle Coolers for Space Applications,pment work is now concentrating on multistage coolers for temperatures below 30 K. This paper describes results from a two stage cooler built at the Rutherford Appleton Laboratory and preliminary tests on a closed cycle 4 K cooler.
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Aspects of Data Flow for an Edison-Type Observatory,e in the near (2–50 .m) infrared and having a mission lifetime often to twenty years. This would be achieved using a passively cooled mirror and an instrumental package whose passive cooling is aided by a mechanical cooler. The data-flow to and from such a telescope would be large and thus the data-
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https://doi.org/10.1007/978-94-011-2680-9Evolution; astronomy; astrophysics; interstellar matter; observatory; star; star formation; telescope
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Infrared Space Studies of Solar-System Objects: The Post-ISO ERA,es. Beyond ISO, future Solar-System studies using infrared space missions will require an extension of the spectral coverage toward longer wavelengths and increased spatial capabilities for imaging spectroscopy.
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Stellar Infrared Astronomy with Edison,an be extracted from such observations. Some emphasis is placed on the possibilities of stellar IR astronomy using a large space-borne telescope, especially with respect to the much better spatial and spectral resolution of such a telescope compared to the current generation of ground-based and space IR telescopes.
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