Description

Book Synopsis
Nanoscale materials are showing great promise in various optoelectronics applications, especially the fast-developing fields of optical communication and optical computers. With silicon as the leading material for microelectronics, the integration of optical functions into silicon technology is a very important challenge. This book concentrates on the optoelectronic properties of silicon nanocrystals, associated phenomena and related topics, from basic principles to the most recent discoveries. The areas of focus include silicon-based light-emitting devices, light modulators, optical wavevguides and interconnectors, optical amplifiers and memory elements. The book comprises theoretical and experimental analyses of various properties of silicon nanocrystals, research methods and preparation techniques, and some promising applications.

Trade Review

"Silicon Nanophotonics, edited by Leonid Khriachtchev, is a most useful and up-to-date collection of review articles covering the various aspects of silicon-based photonics, written by leading experts in the area. Both theoretical and experimental issues of silicon nanocrystals were considered, as well as device applications in both solid-state photonics and biology. This volume is an essential read for those working to make silicon shine as optoelectronics material."
—Prof. Risto M. Nieminen, Helsinki University of Technology, Finland



Table of Contents

Silicon Nanocrystals Enabling Silicon Photonics. Theoretical Studies of Absorption, Emission and Gain in Silicon Nanostructures. Computational Studies of Free-Standing Silicon Nanoclusters. Optical Gain in Silicon Nanocrystal Waveguides Measured by the Variable Stripe Length Technique. Si-nc Based Light Emitters and Er Doping for Gain Materials. Silicon Nanocrystals: Structural and Optical Properties and Device Applications. Optical Spectroscopy of Individual Silicon Nanocrystals. Silicon Nanocrystal Memories,. Engineering the Optical Response of Nanostructured Silicon. Guiding and Amplification of Light Due to Silicon Nanocrystals Embedded in Waveguides. Silicon Nanocrystals in Silica: Optical Properties and Laser-Induced Thermal Effects. Light Emission from Silicon-Rich Nitride Nanostructures. Energy Efficiency in Silicon Photonics. Light Emitting Defects in Ion-Irradiated Alpha-Quartz and Silicon Nanoclusters. Auger Processes in Silicon Nanocrystals Assemblies. Biological Applications of Silicon Nanostructures.

Silicon Nanophotonics: Basic Principles, Current

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A Hardback by Leonid Khriachtchev

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    View other formats and editions of Silicon Nanophotonics: Basic Principles, Current by Leonid Khriachtchev

    Publisher: Pan Stanford Publishing Pte Ltd
    Publication Date: 31/08/2008
    ISBN13: 9789814241113, 978-9814241113
    ISBN10: 9814241113

    Description

    Book Synopsis
    Nanoscale materials are showing great promise in various optoelectronics applications, especially the fast-developing fields of optical communication and optical computers. With silicon as the leading material for microelectronics, the integration of optical functions into silicon technology is a very important challenge. This book concentrates on the optoelectronic properties of silicon nanocrystals, associated phenomena and related topics, from basic principles to the most recent discoveries. The areas of focus include silicon-based light-emitting devices, light modulators, optical wavevguides and interconnectors, optical amplifiers and memory elements. The book comprises theoretical and experimental analyses of various properties of silicon nanocrystals, research methods and preparation techniques, and some promising applications.

    Trade Review

    "Silicon Nanophotonics, edited by Leonid Khriachtchev, is a most useful and up-to-date collection of review articles covering the various aspects of silicon-based photonics, written by leading experts in the area. Both theoretical and experimental issues of silicon nanocrystals were considered, as well as device applications in both solid-state photonics and biology. This volume is an essential read for those working to make silicon shine as optoelectronics material."
    —Prof. Risto M. Nieminen, Helsinki University of Technology, Finland



    Table of Contents

    Silicon Nanocrystals Enabling Silicon Photonics. Theoretical Studies of Absorption, Emission and Gain in Silicon Nanostructures. Computational Studies of Free-Standing Silicon Nanoclusters. Optical Gain in Silicon Nanocrystal Waveguides Measured by the Variable Stripe Length Technique. Si-nc Based Light Emitters and Er Doping for Gain Materials. Silicon Nanocrystals: Structural and Optical Properties and Device Applications. Optical Spectroscopy of Individual Silicon Nanocrystals. Silicon Nanocrystal Memories,. Engineering the Optical Response of Nanostructured Silicon. Guiding and Amplification of Light Due to Silicon Nanocrystals Embedded in Waveguides. Silicon Nanocrystals in Silica: Optical Properties and Laser-Induced Thermal Effects. Light Emission from Silicon-Rich Nitride Nanostructures. Energy Efficiency in Silicon Photonics. Light Emitting Defects in Ion-Irradiated Alpha-Quartz and Silicon Nanoclusters. Auger Processes in Silicon Nanocrystals Assemblies. Biological Applications of Silicon Nanostructures.

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