erev Krasnogorsk Factory Federal Scientific Manufacturing Center

Krasnogorsk, Russia

erev Krasnogorsk Factory Federal Scientific Manufacturing Center

Krasnogorsk, Russia
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Arkhipov S.A.,erev Krasnogorsk Factory Federal Scientific Manufacturing Center | Senik B.N.,erev Krasnogorsk Factory Federal Scientific Manufacturing Center | Zavarzin V.I.,Moscow State Technical University
Journal of Optical Technology (A Translation of Opticheskii Zhurnal) | Year: 2013

This paper presents specific examples of the fabrication of the APO Zenit-GL and APO Zenit-GTs high-quality apochromatic objectives, used in the Gamma-L and Gamma-Ts space-based optoelectronic complexes, along with the design of a high-accuracy spectral-beamsplitter prism module. The use of compact mirror-lens optical systems with eccentrically arranged image fields is also considered, and this in turn makes it possible to substantially reduce the mass of the apparatus and creates a fundamentally new class of compact systems for remote probing of the earth. © 2013 Optical Society of America.


Belskii A.B.,erev Krasnogorsk Factory Federal Scientific Manufacturing Center | Shmyga V.V.,erev Krasnogorsk Factory Federal Scientific Manufacturing Center
Journal of Optical Technology (A Translation of Opticheskii Zhurnal) | Year: 2011

The creation of modern optical and optoelectronic devices requires the use of progressive design and process solutions, one of which is the aspherization of optical surfaces, which is directed to reaching the limiting characteristics of optical systems. Because of this, it is necessary to use a comprehensive approach not only to the design problems and to the development of processes and methods for monitoring the production of aspheric surfaces, but also the techno-economic bases for using them. This article discusses the techno-economic conditions for the validity of the aspherization of optical elements for creating various classes of optical systems. © 2011 Optical Society of America.

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