Amazon.com: Frequency Stabilization of Semiconductor Laser Diodes (Artech House Optoelectronics Library) (9780890066485): Tetsuhiko Ikegami, Shoichi Sudo, Yoshihisa Sakai: Books


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Frequency Stabilization of Semiconductor Laser Diodes (Artech House Optoelectronics Library)
 
 
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Frequency Stabilization of Semiconductor Laser Diodes (Artech House Optoelectronics Library) [Hardcover]

Tetsuhiko Ikegami (Author), Shoichi Sudo (Author), Yoshihisa Sakai (Author)

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Book Description

March 1995 0890066485 978-0890066485
This reference describes in detail the critical issue of frequency stabilization of semiconductor laser diodes, with emphasis on the practical frequency stabilization schemes of laser diodes and laser modules, and their applications to optical transmission systems, optical measurements, photonics switching systems, and more. Written by three of the world's foremost authorities on the topic, "Frequency Stabilization of Semiconductor Laser Diodes": provides an assessment of the current state of the art; shows the performance characteristics of semiconductor laser diodes; demonstrates how the operation frequency of semiconductor lasers can be stabilized; details the frequency references for the laser stabilization; and reveals how frequency stabilized lasers can be employed in a wide variety of applications in the optical communications areas. The book includes numerous references and features 137 equations and over 300 figures. This source is for engineers, scientists and others who want to systematically study the topic, learn how to fabricate novel devices, or develop advanced applications systems.

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Inside This Book (learn more)
First Sentence:
We shall begin by referring to a statement made by Dr. A. L. Schawlow in 1963: It is never possible to predict when a development in technology will fire the imagination of the scientific and engineering community. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
frequency stabilization scheme, precise frequency stabilization, optogalvanic signal, laser diode frequency stabilization, hyperfine absorption lines, laser stabilization, etalon transmission curve, saturated absorption spectra, absolute frequency stabilization, absorption gas cell, frequency stabilization using, saturated absorption spectrum, optogalvanic effect, frequency dithering, saturated absorption peak, saturated absorption line, laser frequency fluctuation, etalon array, hfs transition, slave lasers, quartz etalon, first derivative signal, methane line, natural xenon, required linewidth
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, Quantum Electron, Van Nostrand, Iodine Hyperfine Structure Observed, Laser Saturated Molecular Absorption, Means of Fourier Transform Spectroscopy, Measurement of Absolute Optical Collision Diameters, Optical Fiber Communications, Preliminary Wavelength, Atomic Line Center, Distributed Feedback Laser, Effect of Nuclear Quadruple Interactions, Intensity Vacuum, Methane Using Tuned-Laser Spectroscopy, Paper of Technical Group, Spectroscopy Applied
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