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Fundamentals of Semiconductor Lasers (Springer Series in Optical Sciences)
 
 
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Fundamentals of Semiconductor Lasers (Springer Series in Optical Sciences) [Hardcover]

Takahiro Numai (Author)

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Book Description

January 8, 2004 Springer Series in Optical Sciences (Book 93)

The detailed and comprehensive presentation is unique in that it encourages the reader to consider different semiconductor lasers from different angles. Emphasis is placed on recognizing common concepts such operating principles and structure, and solving problems based on individual situations. The treatment is enhanced by an historical account of advances in semiconductor lasers over the years, discussing both those ideas that have persisted over the years and those that have faded out.


Editorial Reviews

Review

"Fundamentals of Semiconductor Lasers is a clear and instructive book for advanced undergraduate or graduate students who will become the next generation of laser specialists, and it is a good update for professional physicists, engineers, and researchers in quantum electronics and laser processing. The chapters are largely independent of one another, and a reader who is interested in only one topic may be satisfied by reading all or parts of the relevant chapter without reading the rest of the book. Well written, with many useful figures, formulas, and examples of calculations, Numai's book is a good guide in the field. " Industrial Physicist

From the Back Cover

 

Fundamentals of Semiconductor Lasers explains the physics and fundamental characteristics of semiconductor lasers with regards to systems applications. The detailed and comprehensive presentation is unique in that it encourages the reader to consider different semiconductor lasers from different angles. Emphasis is placed on recognizing common concepts such operating principles and structure, and solving problems based on individual situations. The treatment is enhanced by an historical account of advances in semiconductor lasers over the years, discussing both those ideas that have both persisted over the years and those that have faded out.

The first four chapters cover the basics of semiconductors, including band structures, optical transitions, optical waveguides, and optical resonators. The remaining chapters discuss operating principles and basic characteristics of semiconductor lasers, and advanced topics including dynamics single-mode lasers, quantum well lasers, and control of spontaneous emission. The reader need only be familiar with undergraduate-level electromagnetism and quantum mechanics. After reading this book, the student will be able to think critically about semiconductor lasers, and be able to read and understand journal papers in the field. This book will be essential to any advanced undergraduate or graduate student of semiconductor lasers, and any professional physicist or engineer looking for a good overview of the subject.


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Inside This Book (learn more)
First Sentence:
Optical transition, such as the emission and absorption of light, are closely related to the energies of electrons, as shown in Table 1.1. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
horizontal transverse modes, optical gaits, grown laver, hopping noise, heavy hole hand, carrier fluctuations, photon recycling, refract ive index, active laver, ion hand, coupled wave theory, optical gain, ric field, gain guiding, feedback noise, index guiding, laver thickness, operat ions, valence hands, hole band, optical cavity, light hole, spontaneous emission rate, discrete approach, optical resonators
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Relative Intensity Noise
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