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Semiconductor-Laser Fundamentals

Author : Weng W. Chow
Publisher : Springer Science & Business Media
Page : 253 pages
File Size : 13,91 MB
Release : 2013-03-09
Category : 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.

Fundamentals of Semiconductor Lasers

Author : Takahiro Numai
Publisher : Springer Science & Business Media
Page : 267 pages
File Size : 23,30 MB
Release : 2004-01-08
Category : 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.

Semiconductor Laser Fundamentals

Author : Toshiaki Suhara
Publisher : CRC Press
Page : 330 pages
File Size : 14,41 MB
Release : 2004-03-16
Category : Science
ISBN : 9780203020470

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Ranging from fundamental theoretical concepts to advanced device technologies, this reference/text explores the engineering, characteristics, and performance of specific semiconductor lasers. It defines key principles in electromagnetics, optoelectronics, and laser implementation for novel applications in optical communications, storage, processing

High-Power Diode Lasers

Author : Roland Diehl
Publisher : Springer Science & Business Media
Page : 420 pages
File Size : 16,43 MB
Release : 2003-07-01
Category : Science
ISBN : 3540478523

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Starting from the basics of semiconductor lasers with emphasis on the generation of high optical output power the reader is introduced in a tutorial way to all key technologies required to fabricate high-power diode-laser sources. Various applications are exemplified.

Semiconductor-Laser Physics

Author : Weng W. Chow
Publisher : Springer Science & Business Media
Page : 509 pages
File Size : 11,94 MB
Release : 2012-12-06
Category : 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.

Laser Fundamentals

Author : William T. Silfvast
Publisher : Cambridge University Press
Page : 999 pages
File Size : 49,15 MB
Release : 2008-07-21
Category : Science
ISBN : 1139855573

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Laser Fundamentals provides a clear and comprehensive introduction to the physical and engineering principles of laser operation and design. Simple explanations, based throughout on key underlying concepts, lead the reader logically from the basics of laser action to advanced topics in laser physics and engineering. Much new material has been added to this second edition, especially in the areas of solid-state lasers, semiconductor lasers, and laser cavities. This 2004 edition contains a new chapter on laser operation above threshold, including extensive discussion of laser amplifiers. The clear explanations, worked examples, and many homework problems will make this book invaluable to undergraduate and first-year graduate students in science and engineering taking courses on lasers. The summaries of key types of lasers, the use of many unique theoretical descriptions, and the extensive bibliography will also make this a valuable reference work for researchers.

Semiconductor Lasers I

Author : Eli Kapon
Publisher : Academic Press
Page : 467 pages
File Size : 45,45 MB
Release : 1999-01-12
Category : Science
ISBN : 0080540929

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This book covers the device physics of semiconductor lasers in five chapters written by recognized experts in this field. The volume begins by introducing the basic mechanisms of optical gain in semiconductors and the role of quantum confinement in modern quantum well diode lasers. Subsequent chapters treat the effects of built-in strain, one of the important recent advances in the technology of these lasers, and the physical mechanisms underlying the dynamics and high speed modulation of these devices. The book concludes with chapters addressing the control of photon states in squeezed-light and microcavity structures, and electron states in low dimensional quantum wire and quantum dot lasers. The book offers useful information for both readers unfamiliar with semiconductor lasers, through the introductory parts of each chapter, as well as a state-of-the-art discussion of some of the most advanced semiconductor laser structures, intended for readers engaged in research in this field. This book may also serve as an introduction for the companion volume, Semiconductor Lasers II: Materials and Structures, which presents further details on the different material systems and laser structures used for achieving specific diode laser performance features. Introduces the reader to the basics of semiconductor lasers Covers the fundamentals of lasing in semiconductors, including quantum confined and microcavity structures Beneficial to readers interested in the more general aspects of semiconductor physics and optoelectronic devices, such as quantum confined heterostructures and integrated optics Each chapter contains a thorough introduction to the topic geared toward the non-expert, followed by an in-depth discussion of current technology and future trends Useful for professionals engaged in research and development Contains numerous schematic and data-containing illustrations

High-Power Diode Lasers

Author : Roland Diehl
Publisher : Springer Science & Business Media
Page : 420 pages
File Size : 37,63 MB
Release : 2000-09-04
Category : Medical
ISBN : 3540666931

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With Contributions by Numerous Experts

Single Frequency Semiconductor Lasers

Author : Zujie Fang
Publisher : Springer
Page : 317 pages
File Size : 11,50 MB
Release : 2017-07-29
Category : 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.

Fundamentals of Semiconductor Lasers

Author : Takahiro Numai
Publisher : Springer
Page : 294 pages
File Size : 27,83 MB
Release : 2014-08-27
Category : Science
ISBN : 4431551484

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This book explains physics under the operating principles of semiconductor lasers in detail based on the experience of the author, dealing with the first manufacturing of phase-shifted DFB-LDs and recent research on transverse modes. The book also bridges a wide gap between journal papers and textbooks, requiring only an undergraduate-level knowledge of electromagnetism and quantum mechanics, and helps readers to understand journal papers where definitions of some technical terms vary, depending on the paper. Two definitions of the photon density in the rate equations and two definitions of the phase-shift in the phase-shifted DFB-LD are explained, and differences in the calculated results are indicated, depending on the definitions. Readers can understand the physics of semiconductor lasers and analytical tools for Fabry-Perot LDs, DFB-LDs, and VCSELs and will be stimulated to develop semiconductor lasers themselves.