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Semiconductor laser theory / Prasanta Kumar Basu, Bratati Mukhopadhyay and Rikmantra Basu.

By: Contributor(s): Material type: TextTextPublication details: Boca Raton : CRC Press, ©2016.Description: xxiv, 527 p. : illustrations ; 25 cmISBN:
  • 9781466561915
Subject(s): DDC classification:
  • 621.3661 23 B327
Contents:
1. Introduction to semiconductor lasers -- 2. Basic theory -- 3. Heterojunctions and quantum structures -- 4. Band structures -- 5. Waveguides and resonators -- 6. Optical processes -- 7. Models for DH lasers -- 8. Quantum well lasers -- 9. Quantum dot lasers -- 10. Quantum cascade lasers -- 11. Vertical-Cavity Surface-Emitting Laser -- 12. Single mode and tunable lasers -- 13. Nitride lasers -- 14. Group IV lasers -- 15. Transistor lasers -- Appendices -- Index.
Summary: Semiconductor Laser Theory takes a semiclassical approach to teaching the principles, structure, and applications of semiconductor lasers. Designed for graduate students in physics, electrical engineering, and materials science, the text covers many recent developments, including diode lasers using quantum wells, quantum dots, quantum cascade lasers, nitride lasers, group IV lasers, and transistor lasers.
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Includes bibliographical references and index.

1. Introduction to semiconductor lasers --
2. Basic theory --
3. Heterojunctions and quantum structures --
4. Band structures --
5. Waveguides and resonators --
6. Optical processes --
7. Models for DH lasers --
8. Quantum well lasers --
9. Quantum dot lasers --
10. Quantum cascade lasers --
11. Vertical-Cavity Surface-Emitting Laser --
12. Single mode and tunable lasers --
13. Nitride lasers --
14. Group IV lasers --
15. Transistor lasers --
Appendices --
Index.

Semiconductor Laser Theory takes a semiclassical approach to teaching the principles, structure, and applications of semiconductor lasers. Designed for graduate students in physics, electrical engineering, and materials science, the text covers many recent developments, including diode lasers using quantum wells, quantum dots, quantum cascade lasers, nitride lasers, group IV lasers, and transistor lasers.

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