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Field Guide to Crystal Growth.

Author: Ashok K Batra; Mohan D Aggarwal
Publisher: Bellingham : Society of Photo-Optical Instrumentation Engineers (SPIE), 2018.
Series: Field Guide.
Edition/Format:   eBook : Document : English : 38th edView all editions and formats
Summary:
Crystal growth is the art and science of growing crystals to facilitate high-technology applications in lasers, semiconducting devices, computers, magnetic and optical devices, optical processors, and pharmaceuticals, among others. This Field Guide examines the basic phenomena and techniques of growing bulk single crystals from solution, melt, and vapors. Some techniques for growth in the microgravity environment of  Read more...
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Details

Genre/Form: Electronic books
Additional Physical Format: Print version:
Batra, Ashok K.
Field Guide to Crystal Growth.
Bellingham : Society of Photo-Optical Instrumentation Engineers (SPIE), ©2018
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Ashok K Batra; Mohan D Aggarwal
ISBN: 9781510617131 1510617132
OCLC Number: 1054066178
Description: 1 online resource (96 pages).
Contents: Intro; Copyright; Series Introduction; Series Page; Preface; Acknowledgments; Glossary of Symbols and Notation; Introduction; Crystal Growth; Objectives of Crystal Growth; Crystallization Methods; Synthetic Crystals; Applications of Single Crystals; More Applications of Single Crystals; Structures and Systems; Crystal Structure and Unit Cell; Crystal Systems and Bravais Lattice; Direction Indices; Miller Indices; Imperfections in Crystals; Types of Imperfections; Point Defects; Linear Defects: Dislocations; External Surface and Planar Defects; Crystal Twins and Stacking Faults. Voids and Atomic VibrationsGrowth Phenomena; Crystal Growth Processes; How to Choose the Method (Liquid to Solid Phase); Solvent Selection; Solubility; Solubility and Supersaturation; Seed Crystal Preparation and Mounting; Solution Preparation and Starting a Growth Run; Crystallizer Design; Design Considerations; Example System; Alternative System Design; Solid Growth; Solid Crystal Growth Methods; Slow Cooling of Solution; Recipe for Triglycine Sulfate Crystals; Detailed TGS Crystal Growth Method; Temperature-Difference Method; Solvent-Evaporation Method; Gel/Chemical Method. Microgravity GrowthGrowth of TGS Crystals in Space; Cooled Sting Technique; Liquid Growth; Liquid Crystal Growth Methods; Liquid-Solid Phase Transformation; Crystal-Pulling Techniques; Czochralski Technique; Crystal-Pulling Apparatus; Common Crucible Materials and Insulators; Heating Methods for Melt Growth; Temperature Measurement and Control; Automatic Diameter Control; Parameters, Advantages, and Disadvantages; MNA:MAP Crystal Growth; Recipe for Silicon Crystals; Recipe for Lithium Niobate Crystals; Recipe for Bismuth Silicon Oxide Crystals; Liquid-Encapsulated Czochralski Method. Bridgman-Stockbarger TechniqueNovel Bridgman-Stockbarger Design; Recipe for Bulk Lead Iodide Crystals; Lead Iodide Setup; Recipe for Vanadium Pentoxide Crystals; Hydrothermal Crystal Growth; Ammonothermal Crystal Growth; Crystal Growth from Flux; Flux, Crucible, and Environment; Recipe for PMN-PT Crystals; Growth by Electrodeposition; Vertical Floating Zone Melting; Horizontal Zone Melting; Verneuil Flame Fusion; Considerations for the Verneuil Method; Arc Fusion Growth; Growth by Skull Melting; Vapor Phase Growth; The Vapor Phase; Tube-Based Systems; Recipe for Zinc Selenide Crystals. Recipe for Silicon Carbide CrystalsBibliography; Index; Author Biographies.
Series Title: Field Guide.

Abstract:

Crystal growth is the art and science of growing crystals to facilitate high-technology applications in lasers, semiconducting devices, computers, magnetic and optical devices, optical processors, and pharmaceuticals, among others. This Field Guide examines the basic phenomena and techniques of growing bulk single crystals from solution, melt, and vapors. Some techniques for growth in the microgravity environment of space are also addressed. Other topics include how to choose the right crystallization method (concentration gradient or thermal gradient) based on the physical and chemical proper.

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