Ternary Chalcopyrite Semiconductors: Growth, Electronic Properties, and Applications

Ternary Chalcopyrite Semiconductors: Growth, Electronic Properties, and Applications
Author :
Publisher : Elsevier
Total Pages : 261
Release :
ISBN-10 : 9781483157924
ISBN-13 : 148315792X
Rating : 4/5 (24 Downloads)

Book Synopsis Ternary Chalcopyrite Semiconductors: Growth, Electronic Properties, and Applications by : J. L. Shay

Download or read book Ternary Chalcopyrite Semiconductors: Growth, Electronic Properties, and Applications written by J. L. Shay and published by Elsevier. This book was released on 2013-10-22 with total page 261 pages. Available in PDF, EPUB and Kindle. Book excerpt: Ternary Chalcopyrite Semiconductors: Growth, Electronic Properties, and Applications covers the developments of work in the I-III-VI2 and II-IV-V2 ternary chalcopyrite compounds. This book is composed of eight chapters that focus on the crystal growth, characterization, and applications of these compounds to optical communications systems. After briefly dealing with the status of ternary chalcopyrite compounds, this book goes on describing the crystal growth of II-IV-V2 and I-III-VI2 single crystals. Chapters 3 and 4 examine the energy band structure of these semiconductor compounds, illustrating that these compounds are the simplest ternary analogs of II-VI zincblende compounds. Chapter 5 discusses the spontaneous luminescence, stimulated emission and laser action, and light-emitting diodes employing ternary chalcopyrite compounds. Chapter 6 discusses some of the fundamental principles of nonlinear optical interactions and the properties of the chalcopyrite crystals. This text also highlights the nonlinear optical devices available. Chapter 7 describes the electrical properties of chalcopyrite crystals, whereas the concluding chapter deals with the other physical properties of these compounds, such as lattice vibrational spectra, optical activity, and linear thermal expansion. This book is of great value to researchers and workers in the semiconductor field.


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