Coherence, amplification, and quantum effects in semiconductor lasers
Author(s)
Bibliographic Information
Coherence, amplification, and quantum effects in semiconductor lasers
(Wiley series in pure and applied optics)
Wiley, c1991
Available at 23 libraries
  Aomori
  Iwate
  Miyagi
  Akita
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  Ibaraki
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  Nagasaki
  Kumamoto
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  Miyazaki
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Note
"A Wiley-Interscience publication."
Includes bibliographical references and index
Description and Table of Contents
Description
This study attempts to systematically review the coherence, amplification and quantum effects of semiconductor lasers. The first section is concerned with the application of semiconductor lasers for coherent communication and spectroscopy. This is followed by a section which treats a semiconductor laser amplifier. The Fabry-Perot cavity amplifier, travelling-wave amplifier and injection lock oscillator are described. The third and final section of the text examines the quantum effects of semiconductor lasers. Squeezed state generation and the inhibition of spontaneous emission in semiconductor lasers are described as well as general quantum noise properties.
Table of Contents
Line Broadening of Semiconductor Lasers (C. Henry). Modulation and Noise Spectra of Complicated Laser Structures (O. Nilsson, et al.). Frequency Tunability, Frequency Modulation, and Spectral Linewidth of Complicated Structure Lasers (Y. Yoshikuni). Spectroscopy by Semiconductor Lasers (M. Ohtsu & K. Nakagawa). Coherent Detection Using Semiconductor Lasers: System Design Concepts and Experiments (T. Hodgkinson). Traveling--Wave Semiconductor Laser Amplifiers (T. Saitoh & T. Mukai). Semiconductor Laser Amplifiers in High--Bit--Rate and Wavelength--Division--Multiplexed Optical Communication Systems (R. Jopson & T. Darcie). Injection--Locked Semiconductor Laser Amplifiers (S. Kobayashi). Photon Statistics and Mode Partition Noise of Semiconductor Lasers (P. Liu). Squeezed--State Generation by Semiconductor Lasers (Y. Yamamoto, et al.). Generation of Photon--Number--Squeezed Light by Semiconductor Incoherent Light Sources (M. Teich, et al.). Controlled Spontaneous Emission in Microcavity Semiconductor Lasers (Y. Yamamoto, et al.). Index.
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