Semiconductor-Laser Physics

Semiconductor-Laser Physics
Title Semiconductor-Laser Physics PDF eBook
Author Weng W. Chow
Publisher Springer Science & Business Media
Pages 509
Release 2012-12-06
Genre Science
ISBN 3642612253

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Semiconductor-Laser Physics discusses the underlying physics and operational principles of semiconductor lasers. The optical and electronic properties of the semiconductor medium are analyzed in detail, including quantum confinement and gain engineering effects. A semiclassical and a quantum version of the laser theory are presented, including an analysis of single- and multimode operation, instabilities, laser arrays, unstable resonators, and microcavity lasers.

Physics of Semiconductor Laser Devices

Physics of Semiconductor Laser Devices
Title Physics of Semiconductor Laser Devices PDF eBook
Author George Horace Brooke Thompson
Publisher John Wiley & Sons
Pages 584
Release 1980
Genre Science
ISBN

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Semiconductor-Laser Fundamentals

Semiconductor-Laser Fundamentals
Title Semiconductor-Laser Fundamentals PDF eBook
Author Weng W. Chow
Publisher Springer Science & Business Media
Pages 253
Release 2013-03-09
Genre Science
ISBN 3662038803

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This in-depth title discusses the underlying physics and operational principles of semiconductor lasers. It analyzes the optical and electronic properties of the semiconductor medium in detail, including quantum confinement and gain-engineering effects. The text also includes recent developments in blue-emitting semiconductor lasers.

Physics of Semiconductor Lasers

Physics of Semiconductor Lasers
Title Physics of Semiconductor Lasers PDF eBook
Author B. Mroziewicz
Publisher Elsevier
Pages 474
Release 2017-01-31
Genre Science
ISBN 1483291650

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Written for readers who have some background in solid state physics but do not necessarily possess any knowledge of semiconductor lasers, this book provides a comprehensive and concise account of fundamental semiconductor laser physics, technology and properties. The principles of operation of these lasers are therefore discussed in detail with the interrelations between their design and optical, electrical and thermal properties. The relative merits of a large number of laser structures and their parameters are described to acquaint the reader with the various aspects of the semiconductor lasers and the trends in their development.

Fundamentals of Semiconductor Lasers

Fundamentals of Semiconductor Lasers
Title Fundamentals of Semiconductor Lasers PDF eBook
Author Takahiro Numai
Publisher Springer Science & Business Media
Pages 267
Release 2004-01-08
Genre Science
ISBN 0387408363

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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.

Single Frequency Semiconductor Lasers

Single Frequency Semiconductor Lasers
Title Single Frequency Semiconductor Lasers PDF eBook
Author Zujie Fang
Publisher Springer
Pages 317
Release 2017-07-29
Genre Science
ISBN 9811052573

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This book systematically introduces the single frequency semiconductor laser, which is widely used in many vital advanced technologies, such as the laser cooling of atoms and atomic clock, high-precision measurements and spectroscopy, coherent optical communications, and advanced optical sensors. It presents both the fundamentals and characteristics of semiconductor lasers, including basic F-P structure and monolithic integrated structures; interprets laser noises and their measurements; and explains mechanisms and technologies relating to the main aspects of single frequency lasers, including external cavity lasers, frequency stabilization technologies, frequency sweeping, optical phase locked loops, and so on. It paints a clear, physical picture of related technologies and reviews new developments in the field as well. It will be a useful reference to graduate students, researchers, and engineers in the field.

Semiconductor Laser Engineering, Reliability and Diagnostics

Semiconductor Laser Engineering, Reliability and Diagnostics
Title Semiconductor Laser Engineering, Reliability and Diagnostics PDF eBook
Author Peter W. Epperlein
Publisher John Wiley & Sons
Pages 522
Release 2013-01-25
Genre Technology & Engineering
ISBN 1118481860

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This reference book provides a fully integrated novel approach to the development of high-power, single-transverse mode, edge-emitting diode lasers by addressing the complementary topics of device engineering, reliability engineering and device diagnostics in the same book, and thus closes the gap in the current book literature. Diode laser fundamentals are discussed, followed by an elaborate discussion of problem-oriented design guidelines and techniques, and by a systematic treatment of the origins of laser degradation and a thorough exploration of the engineering means to enhance the optical strength of the laser. Stability criteria of critical laser characteristics and key laser robustness factors are discussed along with clear design considerations in the context of reliability engineering approaches and models, and typical programs for reliability tests and laser product qualifications. Novel, advanced diagnostic methods are reviewed to discuss, for the first time in detail in book literature, performance- and reliability-impacting factors such as temperature, stress and material instabilities. Further key features include: practical design guidelines that consider also reliability related effects, key laser robustness factors, basic laser fabrication and packaging issues; detailed discussion of diagnostic investigations of diode lasers, the fundamentals of the applied approaches and techniques, many of them pioneered by the author to be fit-for-purpose and novel in the application; systematic insight into laser degradation modes such as catastrophic optical damage, and a wide range of technologies to increase the optical strength of diode lasers; coverage of basic concepts and techniques of laser reliability engineering with details on a standard commercial high power laser reliability test program. Semiconductor Laser Engineering, Reliability and Diagnostics reflects the extensive expertise of the author in the diode laser field both as a top scientific researcher as well as a key developer of high-power highly reliable devices. With invaluable practical advice, this new reference book is suited to practising researchers in diode laser technologies, and to postgraduate engineering students.