Materials And Devices For Optoelectronics And Microphotonics


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Materials and Devices for Optoelectronics and Microphotonics


Materials and Devices for Optoelectronics and Microphotonics

Author: Ralf B. Wehrspohn

language: en

Publisher:

Release Date: 2002


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This volume combines the proceedings of Symposium K, Materials and Devices for Optoelectronics and Photonics, and Symposium L, Photonic Crystals--From Materials to Devices, both from the 2002 MRS Spring Meeting in San Francisco. The two symposia served as a unique meeting place where a community of materials scientists and device-oriented engineers could present their latest results. Papers from Symposium K concentrate on materials for solid-state lighting, with particular emphasis on nitrides and other high-bandgap semiconductors and quantum dots, as well as materials for optical waveguides and interconnects. Presentations from Symposium L discuss theoretical methods and materials and fabrication techniques for 2D and 3D photonic crystals, with special emphasis on tunability of photonic crystals.

Organic and Polymeric Materials and Devices - Optical, Electrical and Optoelectronic Properties: Volume 725


Organic and Polymeric Materials and Devices - Optical, Electrical and Optoelectronic Properties: Volume 725

Author: Materials Research Society. Meeting

language: en

Publisher:

Release Date: 2002-10-22


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The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Silicon-based Microphotonics: from Basics to Applications


Silicon-based Microphotonics: from Basics to Applications

Author: Società italiana di fisica

language: en

Publisher: IOS Press

Release Date: 1999


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The evolution of Si-based optoelectronics has been extremely fast in the last few years and it is predicted that this growth will still continue in the near future. The aim of the volume is to present different Si-based luminescing materials as porous silicon, rare-earth doped silicon, Si nanocrystals, silicides, Si-based multilayers and silicon-germanium alloy or superlattice structures. The different devices needed for an all-Si-based optoelectronics are treated, ranging from light sources to waveguides, from amplifiers and modulators to detectors. Both the very basic treatments as well as applications to real prototype devices and integration in an optical integrated circuit are presented. Several issues are highlighted: the problem of electrical transport in low-dimensional Si systems, the possibility of gain in Si-based systems, the low modulation speed of Si-based LEDs. The book gives a fascinating picture of the state-of-the-art in Si microphotonics and a perspective on what one can expect in the near future.