DocumentCode :
2750035
Title :
A Multi-Channel Optical Rotary Joint on the Basis of Off-Axis Holographic Fresnel Lenses
Author :
Shapar, Volodymyr M. ; Svechnikov, Sergej V. ; Indutnij, Ivan Z. ; Shepeljavij, Peter J. ; Minko, Viktor I.
Author_Institution :
V. Lashkaryov Inst. of Semicond. Phys., Nat. Acad. of Sci. of Ukraine, Kyiv
fYear :
2006
fDate :
June 29 2006-July 1 2006
Firstpage :
378
Lastpage :
383
Abstract :
We performed both theoretical and experimental investigations of the possibility for development of radically new types of small-size multi-channel optical rotary joints (ORJs) on the basis of holographic optics to transmit large arrays of broad-band digital signals from rotary objects to stationary ones through the fiber optic communication channels. To make multi-channel ORJs on the basis of off-axis Fresnel lenses, we developed an original optical recording arrangement of ring Fresnel lenses that combines the advantages of axis Fresnel lens and holographic recording. A manufacturing technology for Fresnel lenses on the basis of inorganic chalcogenide photoresist with maximal diffraction efficiency was developed and optimized. Wc fabricated a three-channel ORJ model with the following characteristics: amplitude modulation percentage for a signal in the ORJ optical channel - no more than 7%; crosstalk signal between the optical channels - no more than 10-5 ; lens diffraction efficiency - 20%
Keywords :
amplitude modulation; holographic storage; lenses; light diffraction; optical communication equipment; optical crosstalk; optical fibre communication; optical modulation; photoresists; Fresnel lenses; amplitude modulation percentage; broad-band digital signals; crosstalk signal; fiber optic communication channels; holographic lenses; holographic optics; holographic recording; inorganic chalcogenide photoresist; lens diffraction efficiency; maximal diffraction efficiency; multichannel rotary joint; off-axis lenses; optical channels; optical recording; optical rotary joint; ring lenses; Fresnel reflection; Holographic optical components; Holography; Lenses; Optical arrays; Optical crosstalk; Optical diffraction; Optical fiber communication; Optical modulation; Optical recording; Fresnel lens; fiber optic communication line; holographic optics; multi-channel optical rotary joint;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Laser and Fiber-Optical Networks Modeling, 8-th International Conference on
Conference_Location :
Kharkiv
Print_ISBN :
1-4244-0233-6
Electronic_ISBN :
1-4244-0234-4
Type :
conf
DOI :
10.1109/LFNM.2006.252068
Filename :
4018287
Link To Document :
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