Low-Dimensional Semiconductor Structures: Fundamentals and Device Applications / Edition 1

Low-Dimensional Semiconductor Structures: Fundamentals and Device Applications / Edition 1

ISBN-10:
0521591031
ISBN-13:
9780521591034
Pub. Date:
07/12/2001
Publisher:
Cambridge University Press
ISBN-10:
0521591031
ISBN-13:
9780521591034
Pub. Date:
07/12/2001
Publisher:
Cambridge University Press
Low-Dimensional Semiconductor Structures: Fundamentals and Device Applications / Edition 1

Low-Dimensional Semiconductor Structures: Fundamentals and Device Applications / Edition 1

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Overview

Low-Dimensional Semiconductor Structures offers a seamless, atoms-to-devices introduction to the latest quantum heterostructures. It covers their fabrication; electronic, optical, and transport properties; role in exploring new physical phenomena; and utilization in devices. The authors describe the epitaxial growth of semiconductors and the physical behavior of electrons and phonons in low-dimensional structures. They then go on to discuss nonlinear optics in quantum heterostructures. The final chapters deal with semiconductor lasers, mesoscopic devices, and high-speed heterostructure devices. The book contains many exercises and comprehensive references.

Product Details

ISBN-13: 9780521591034
Publisher: Cambridge University Press
Publication date: 07/12/2001
Edition description: New Edition
Pages: 408
Product dimensions: 7.13(w) x 10.08(h) x 1.10(d)

Table of Contents

1. Epitaxial growth of semiconductors D. Vvedensky; 2. Electrons in quantum semiconductor structures: an introduction E. Johnson; 3. Electrons in quantum semiconductor structures: more advanced systems and methods E. Johnson; 4. Phonons in low-dimensional semiconductor structures M. Blencowe; 5. Localization and transport A. MacKinnon; 6. Electronic states and optical properties of quantum wells J. Nelson; 7. Nonlinear optics in low-dimensional semiconductors C. Phillips; 8. Semiconductor lasers A. Khan, P. Stavridou, and G. Parry; 9. Mesoscopic devices T. Thornton; 10. High speed heterostructure devices J. Harris.
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