The NATO Advanced Study on Waveguide Optoelectronics was held at the Kelvin Conference Centre in Glasgow, Scotland, between 30 July and 10 August 1990. In aliSO students and 15 lecturers attended the ASI. The successof the meeting was due not only to the high quality of the presentations but also to the enthusiasm ofall the participants and their willingness to take part in the discussion and poster sessions. 1990 was also the year in which Glasgow was the European City of Culture. This resulted in interesting diversions during the middle weekend of the school and also made the meeting…mehr
The NATO Advanced Study on Waveguide Optoelectronics was held at the Kelvin Conference Centre in Glasgow, Scotland, between 30 July and 10 August 1990. In aliSO students and 15 lecturers attended the ASI. The successof the meeting was due not only to the high quality of the presentations but also to the enthusiasm ofall the participants and their willingness to take part in the discussion and poster sessions. 1990 was also the year in which Glasgow was the European City of Culture. This resulted in interesting diversions during the middle weekend of the school and also made the meeting probably the first NATO ASI to share accommodation with the Bolshoi Opera and Ballet who gave memorable performances as partof the City's celebrations. This volume is, however, intended to be more than merely a record of presentations at the NATO meeting. The authors have written their material so as to be approachable by a first degree graduate with some background in optoelectronics. The principal materials considered are the III-V semiconductors, lithium niobate and silica. Recent developments towards optoelectronic integration in semiconductors, developments in devices fabricated in doped silica and doped lithium niobate, and developments in all-optical switching networks are highlighted. The role of reduced dimensional structures is examined in some detail.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Richard De La Rue has been Professor of Optoelectronics at Glasgow University since 1986. His research has been concerned with photonic crystal and photonic wire structures, with waveguide micro-cavities and with meta-materials. Silicon, silica, metals and compound semiconductors are all involved in this nano- and micro-photonics research activity. His research in the area of photonic crystals has evolved to cover compact lasers, planar micro-cavities, photonic-crystal LEDs, photonic integrated circuits (PICs), synthetic opal and inverse opal structures. He is a Fellow of IEEE, OSA, IET, Royal Society of Edinburgh (FRSE) and the Royal Academy of Engineering (FREng)
Inhaltsangabe
1. Materials for Waveguide Optoelectronics.- 2. Design and Modelling of Passive and Active Optical Waveguide Devices.- 3. LiNbO3 Devices.- 4. Impact of Low-Dimensional Physics on Optical and Optoelectronic Devices.- 5. Main Aspects of MOCVD and MBE Growth Techniques.- 6. Quantum Well Lasers.- 7. Optical Bistability in Semiconductor Laser Devices.- 8. Multiple Quantum Well (MQW) Modulators.- 9. Neutral Impurity Disordering of Quantum Well Waveguide Devices.- 10. Optoelectronic and Photonic Integrated Circuits.- 11. Nonlinear Optics.- 12. Optical Fibre Amplifiers.- 13. Femtosecond Techniques for the Characterization of Nonlinear and Linear Properties of Waveguide Devices and Studies of All Optical Switching.- 14. Rare Earth Doped LiNbO3 Waveguide Amplifiers and Lasers.- 15. Abstracts from Poster Session.
1. Materials for Waveguide Optoelectronics.- 2. Design and Modelling of Passive and Active Optical Waveguide Devices.- 3. LiNbO3 Devices.- 4. Impact of Low-Dimensional Physics on Optical and Optoelectronic Devices.- 5. Main Aspects of MOCVD and MBE Growth Techniques.- 6. Quantum Well Lasers.- 7. Optical Bistability in Semiconductor Laser Devices.- 8. Multiple Quantum Well (MQW) Modulators.- 9. Neutral Impurity Disordering of Quantum Well Waveguide Devices.- 10. Optoelectronic and Photonic Integrated Circuits.- 11. Nonlinear Optics.- 12. Optical Fibre Amplifiers.- 13. Femtosecond Techniques for the Characterization of Nonlinear and Linear Properties of Waveguide Devices and Studies of All Optical Switching.- 14. Rare Earth Doped LiNbO3 Waveguide Amplifiers and Lasers.- 15. Abstracts from Poster Session.
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