Liquid phase epitaxy of electronic, optical, and optoelectronic materials

Liquid-Phase Epitaxy (LPE) is a technique used in the bulk growth of crystals, typically in semiconductor manufacturing, whereby the crystal is grown from a rich solution of the semiconductor onto a substrate in layers, each of which is formed by supersaturation or cooling. At least 50% of growth in...

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Bibliographic Details
Corporate Authors: Wiley InterScience Online service
Group Author: Capper, Peter; Mauk, Michael
Published:
Literature type: Electronic eBook
Language: English
Series: Wiley series in materials for electronic and optoelectronic applications
Subjects:
Online Access: http://onlinelibrary.wiley.com/book/10.1002/9780470319505
Summary: Liquid-Phase Epitaxy (LPE) is a technique used in the bulk growth of crystals, typically in semiconductor manufacturing, whereby the crystal is grown from a rich solution of the semiconductor onto a substrate in layers, each of which is formed by supersaturation or cooling. At least 50% of growth in the optoelectronics area is currently focussed on LPE. This book covers the bulk growth of semiconductors, i.e. silicon, gallium arsenide, cadmium mercury telluride, indium phosphide, indium antimonide, gallium nitride, cadmium zinc telluride, a range of wide-bandgap II-VI compounds, diamond and
Carrier Form: 1 online resource (xxii, 441 p.) : ill.
Bibliography: Includes bibliographical references and index.
ISBN: 9780470319505
047031950X
9780470319499 (electronic bk.)
0470319496 (electronic bk.)
1281032204
9781281032201
Index Number: TK7871
CLC: TN04
Contents: Liquid Phase Epitaxy of Electronic, Optical and Optoelectronic Materials; Contents; Series Preface; Preface; Acknowledgements; List of Contributors; 1 Introduction to Liquid Phase Epitaxy; 2 Liquid Phase Epitaxy in Russia Prior to 1990; 3 Phase Diagrams and Modeling in Liquid Phase Epitaxy; 4 Equipment and Instrumentation for Liquid Phase Epitaxy; 5 Silicon, Germanium and Silicon-Germanium Liquid Phase Epitaxy; 6 Liquid Phase Epitaxy of Silicon Carbide; 7 Liquid Phase Epitaxy of Gallium Nitride; 8 Liquid Phase Epitaxy of Quantum Wells and Quantum Dots