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Physics of optoelectronics / Michael A. Parker.

By: Parker, Michael AMaterial type: TextTextLanguage: English Publication details: Boca Raton, FL : Taylor & Francis, 2005. Description: xvi, 742 p. : ill. ; 26 cmISBN: 0824753852; 9780824753856Other title: OptoelectronicsSubject(s): Optoelectronics -- MaterialsDDC classification: 621.381045 LOC classification: TA1750 | .P37 2005Online resources: Publisher description | WorldCat details | E-book Fulltext
Contents:
TOC Ch. 1. Introduction to semiconductor lasers -- Ch. 2. Introduction to laser dynamics -- Ch. 3. Classical electromagnetics and lasers -- Ch. 4. Mathematical foundations -- Ch. 5. Fundamentals of dynamics -- Ch. 6. Light -- Ch. 7. Matter-light interaction -- Ch. 8. Semiconductor emitters and detectors -- App. 1. Review of integrating factors -- App. 2. Rate and continuity equations -- App. 3. The group velocity -- App. 4. Review of probability theory and statistics -- App. 5. The Dirac delta function -- App. 6. Coordinate representations of the Schrodinger wave equation -- App. 7. Integrals with two time scales -- App. 8. The dipole approximation -- App. 9. The density operator and the Boltzmann distribution.
Summary: Summary: Focuses on the properties of optical fields and their interaction with matter. This work offers an introduction to lasers, LEDs, and the rate equations, and then describes the emission and detection processes. It summarizes and reviews the mathematical background of the quantum theory embodied in the Hilbert space.
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Non-fiction 621.381045 PAP 2005 (Browse shelf(Opens below)) Not for loan
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621.381 TOD 2004 Digital electronics / 621.381 TOD 2004 Digital electronics / 621.381045 KAO 2013 Optoelectronics and photonics : 621.381045 PAP 2005 Physics of optoelectronics / 621.3813 POM Microwave engineering / 621.3813 POM Microwave engineering / 621.3813 POM 2004 Microwave engineering /

Includes bibliographical references and index.

TOC Ch. 1. Introduction to semiconductor lasers --
Ch. 2. Introduction to laser dynamics --
Ch. 3. Classical electromagnetics and lasers --
Ch. 4. Mathematical foundations --
Ch. 5. Fundamentals of dynamics --
Ch. 6. Light --
Ch. 7. Matter-light interaction --
Ch. 8. Semiconductor emitters and detectors --
App. 1. Review of integrating factors --
App. 2. Rate and continuity equations --
App. 3. The group velocity --
App. 4. Review of probability theory and statistics --
App. 5. The Dirac delta function --
App. 6. Coordinate representations of the Schrodinger wave equation --
App. 7. Integrals with two time scales --
App. 8. The dipole approximation --
App. 9. The density operator and the Boltzmann distribution.

Summary:
Focuses on the properties of optical fields and their interaction with matter. This work offers an introduction to lasers, LEDs, and the rate equations, and then describes the emission and detection processes. It summarizes and reviews the mathematical background of the quantum theory embodied in the Hilbert space.

EEE

Tahur Ahmed

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