Ferroelectric Crystals for Laser Radiation Control (inbunden)
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Format
Inbunden (Hardback)
Språk
Engelska
Antal sidor
492
Utgivningsdatum
1990-01-01
Förlag
Institute of Physics Publishing
Översättare
Marianna Tsaplina
Originalspråk
Russian
Medarbetare
etc.
Illustrationer
270 line drawings, 22 half-tones, references, index
ISBN
9780750300476

Ferroelectric Crystals for Laser Radiation Control

Inbunden,  Engelska, 1990-01-01
1274
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In practical application of the achievements of quantum electronics an important role is played by crystals permitting laser radiation control (frequency modulation, deviation and conversion). There are only a few such crystals known at the present time. There are no universal crystals, each of them has applicability limits. This book embraces practically all the alkali-metal niobates and tantalates which are already widely used or will be used in the near future to control laser radiation in the visible and nearest IR ranges. The book provides the description of ferroelectric, electro-optic and nonlinear optic properties of crystals and touches upon physico-chemical aspects of the technology of growth of the single crystals of concrete compounds. This book aims to promote a wider introduction, use and production of single crystals of niobates and tantalates of alkali-earth metals and to advance the development of laser engineering.
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Innehållsförteckning

Part 1 Perovskite type ferroelectrics: single crystals of potassium niobate; solid solutions of potassium tantalate niobate; lead zinc and magnesium niobate ferroelectrics with a smeared phase transition. Part 2 Ferroelectrics with tetragonal potassium tungsten bronze type structure: single crystals of barium strontium niobate; barium sodium niobate single crystals; other crystals with tetragonal potassium tungsten bronze type structure; nonlinear optical crystals with lamellar structure. Part 3 Some physical aspects of oxygen-octahedra ferroelectrics: photoreactive properties of oxygen-octahedra ferroelectrics; relation between ferroelectric and nonlinear optical properties of oxygen-octahedra ferroelectrics.