Theory of Semiconductor Lasers: From Basis of Quantum Electronics to Analyses of the Mode Competition Phenomena and Noise

This document was uploaded by one of our users. The uploader already confirmed that they had the permission to publish it. If you are author/publisher or own the copyright of this documents, please report to us by using this DMCA report form.

Simply click on the Download Book button.

Yes, Book downloads on Ebookily are 100% Free.

Sometimes the book is free on Amazon As well, so go ahead and hit "Search on Amazon"

This book provides a unified and complete theory for semiconductor lasers, covering topics ranging from the principles of classical and quantum mechanics to highly advanced levels for readers who need to analyze the complicated operating characteristics generated in the real application of semiconductor lasers.

The author conducts a theoretical analysis especially on the instabilities involved in the operation of semiconductor lasers. A density matrix into the theory for semiconductor lasers is introduced and the formulation of an improved rate equation to help understand the mode competition phenomena which cause the optical external feedback noise is thoroughly described from the basic quantum mechanics. The derivation of the improved rate equation will allow readers to extend the analysis for the different types of semiconductor materials and laser structures they deal with.

This book is intended not only for students and academic researchers but also for engineers who develop lasers for the market, as the advanced topics covered are dedicated to real problems in implementing semiconductor lasers for practical use.

Author(s): Minoru Yamada (auth.)
Series: Springer Series in Optical Sciences 185
Edition: 1
Publisher: Springer Japan
Year: 2014

Language: English
Pages: 303
Tags: Laser Technology, Photonics; Microwaves, RF and Optical Engineering; Mathematical Methods in Physics; Semiconductors; Optical and Electronic Materials

Front Matter....Pages i-xi
Front Matter....Pages 1-1
Overview of the Operating Principles of Lasers....Pages 3-15
The Photon....Pages 17-34
Laser Oscillation....Pages 35-47
Waveguides....Pages 49-64
Density Matrix of a Semiconductor Material....Pages 65-79
Gain Coefficient and Rate Equation....Pages 81-104
Typical Operating Characteristics....Pages 105-112
Front Matter....Pages 113-113
Nonlinear Gain....Pages 115-142
Mode Competition....Pages 143-155
Noise....Pages 157-196
Front Matter....Pages 197-197
Quantum Well Structure....Pages 199-217
Distributed Feedback and Mode Selective Lasers....Pages 219-233
Surface Emitting Lasers....Pages 235-239
Back Matter....Pages 241-303