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Titlebook: Introduction to Semiconductor Lasers for Optical Communications; An Applied Approach David J. Klotzkin Textbook 2020Latest edition Springer

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Coherent Communication Systems,In this chapter, we outline the modern coherent communication formats and how they are realized. These coherent communication formats enable long-distance and high-speed transmission. We also discuss the sources of noise in optical communication systems and the relationship between signal to noise, bit error rate, and communication format.
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David J. Klotzkinrs: Prof. Toshiyuki Itoh and Prof. Jian Sun).9. Ionic Liquids in Materials Science (Section Editors: Prof. Sheng Dai and Prof. Tao Wang).10. Ionic Liquids in Polymer Science (Section Editors: Asso. Prof. Jinming Zhang and Prof. Jun Zhang).11. Ionic Liquids in Environmental Science (Section Editors: Prof. Tiancheng Mu, Prof. Arun978-981-33-4221-7
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Introduction to Semiconductor Lasers for Optical CommunicationsAn Applied Approach
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Semiconductors as Laser Materials 1: Fundamentals,constant and band gap. The physical limits of mixing of different semiconductors are covered. Practical factors that influence the use and fabrication of semiconductors for lasers including factors such as direct and indirect band gaps, and strain and critical thickness, are discussed.
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Semiconductor Laser Operation,nd examine it to see how laser properties such as threshold and slope are predicted. The predictions from the rate equation model are related to the measurements which can be made on these devices to determine fundamental properties of laser material and structure, including internal quantum efficiency and transparency current.
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