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Introduction to Semiconductor Lasers For Optical Communications : An applied approach / David J. Klotzkin

By: Language: English Publication details: Springer Nature 2020 SwitzerlandEdition: 2nd edDescription: xvi, 358 p. : ill. (col.) ; 24 cmISBN:
  • 9783030245030
Subject(s): DDC classification:
  • 621.366 KLO
Summary: This updated, second edition textbook provides a thorough and accessible treatment of semiconductor lasers from a design and engineering perspective. It includes both the physics of devices as well as the engineering, designing and testing of practical lasers. The material is presented clearly with many examples provided. Readers of the book will come to understand the finer aspects of the theory, design, fabrication and test of these devices and have an excellent background for further study of optoelectronics. Provides a multi-faceted approach to explaining the theories behind semiconductor lasers, utilizing mathematical examples, illustrations and written theoretical presentations; Offers a balance of relevant optoelectronic topics, with specific attention given to distributed feedback lasers, growth techniques and waveguide cavity design; Presents modern optical communication formats such as pulse amplitude modulation, phase shift keying and quadrature amplitude modulation; Connects laser and transmitter characteristics with system requirements; Provides a summary of every chapter, worked examples, and problems for readers to solve.
Item type: English Books
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Anna Centenary Library 6TH FLOOR, A WING 621.366 KLO (Browse shelf(Opens below)) Available 679428


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Includes index

This updated, second edition textbook provides a thorough and accessible treatment of semiconductor lasers from a design and engineering perspective. It includes both the physics of devices as well as the engineering, designing and testing of practical lasers. The material is presented clearly with many examples provided. Readers of the book will come to understand the finer aspects of the theory, design, fabrication and test of these devices and have an excellent background for further study of optoelectronics. Provides a multi-faceted approach to explaining the theories behind semiconductor lasers, utilizing mathematical examples, illustrations and written theoretical presentations; Offers a balance of relevant optoelectronic topics, with specific attention given to distributed feedback lasers, growth techniques and waveguide cavity design; Presents modern optical communication formats such as pulse amplitude modulation, phase shift keying and quadrature amplitude modulation; Connects laser and transmitter characteristics with system requirements; Provides a summary of every chapter, worked examples, and problems for readers to solve.

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