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Photorefractive fiber and crystal devices materials, optical properties, and applications V : 18-19 July, 1999, Denver, Colorado

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Published by SPIE in Bellingham, Washington .
Written in English

Subjects:

  • Electrooptical devices -- Materials -- Congresses.,
  • Photorefractive materials -- Congresses.,
  • Optical storage devices -- Materials -- Congresses.,
  • Optical data processing -- Congresses.,
  • Holography -- Congresses.

Book details:

Edition Notes

Includes bibliographic references and author index.

StatementFrancis T.S. Yu, Shizhuo Yin, chairs/editors ; sponsored and published by SPIE--The International Society for Optical Engineering.
GenreCongresses.
SeriesSPIE proceedings series ;, v. 3801, Proceedings of SPIE--the International Society for Optical Engineering ;, v. 3801.
ContributionsYu, Francis T. S., 1932-, Yin, Shizhuo, 1963-, Society of Photo-optical Instrumentation Engineers.
Classifications
LC ClassificationsTA1750 .P4673 1999
The Physical Object
Paginationvii, 280 p. :
Number of Pages280
ID Numbers
Open LibraryOL6805651M
ISBN 100819432873, 0819432873
LC Control Number00268710
OCLC/WorldCa42661854

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PROCEEDINGS VOLUME Photorefractive Fiber and Crystal Devices: Materials, Optical Properties, and Applications IX Photorefractive spectrum-enhanced processing by two-wave mixing in a phase-only filter Standing wave electro-optic modulator by ferroelectric single crystal fiber in . Description: This book is intended to provide expert guidance through the properties of photonic crystal fibers, with a specific focus on the telecommunication aspects. This is the first book to report a complete overview of photonic crystal fiber analysis and design for telecom applications. The refractive index grating can now diffract light shone into the crystal, with the resulting diffraction pattern recreating the original pattern of light stored in the crystal. Application. The photorefractive effect can be used for dynamic holography, and, in particular, for cleaning of coherent beams. For example, in the case of a hologram. Publisher Summary. This chapter discusses light-induced charge transport in photorefractive crystals. The well-known one-center, two-center, and three-valence models are developed to describe the transport properties of lithium niobate and lithium tantalate at high light intensities, as well as perovskite, sillenite, and tungsten–bronzetype crystals.

The advances of photorefractive optics have demonstrated many useful and practical applications, which include the development of photorefractive optic devices for computer communication needs. which can be used for all-optic switches for high-speed fiber optic networks. This book is an important reference both for technical and non. Photorefractive processes in bulk materials have been considered in great detail during the last decade [1]. The study of photorefractivity in fibers or waveguides, however, is relatively recent. The. Aug 17,  · Proc. SPIE , Photorefractive Fiber and Crystal Devices: Materials, Optical Properties, and Applications XII, U (30 August ); doi: / Read Abstract + DOWNLOAD PDF SAVE TO MY LIBRARY + Influence of photorefractive effect on optical parametric. Compared to BaTiO 3 series photorefractive crystals, it has some outstanding advantages, such as easy operation and storage, low cost and large size availability, which make it more suitable for volume fabrication and practical devices. Therefore, Fe:LiNbO 3 crystal will forecast a wide range of applications. MolTech offers crystals with.