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Integrated Optoelectronics

✍ Scribed by Mario Dagenais, Robert F. Leheny and John Crow (Eds.)


Publisher
Academic Press
Year
1995
Tongue
English
Leaves
677
Category
Library

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✦ Synopsis


Integrated optoelectronics is becoming ever more important to communications, computer, and consumer industries. It is the enabling technology in a variety of systems, ranging from low-cost, robust optical componentsin consumer electronics to high-performance broadband information networks capable of supporting video and multimedia conferencing. The requirements for producing low-cost, highly reliable components for deployment in these new systems have created a technology challenge. Integrated optoelectronics promises to meet the performance and cost objectives of these applications by integrating both optical and electronic components in a highly functional chip. This book provides an overview of this exciting newtechnology.
Integrated Optoelectronics brings together a group of acknowledged experts from both universities and industry around the world to focus on a common theme of integration. These experts have reported not only on the state-of-the-art, but also on the physics and design experience that goes into implementing integrated chips and modules. This book is a cohesive series of articles that includes a discussion of the intimate trade-offs between materials, processes, devices, functional blocks, packaging,and systems requirements in a truly integrated technology. This integration encompasses electrical, optoelectronic, and optical devices onto monolithic or hybrid chips, and into multichip modules.
This volume surveys state-of-the-art research activities in integrated optoelectronics and gathers most of the important references into a single place. It outlines the major issues involved in integrating both optical and electronic components, provides an overview of design and fabrication concepts, and discusses the issues involved in bringing these new chips to the marketplace.

This exciting new book:
Provides a broad overview of the optoelectronic field, including materials processing, devices, and systems applications
Features authors who are acknowledged research experts in this field, from both industry and universities around the world
Includes new information on device fabrication, including the latest epitaxial growth and lift-off techniques to permit the mixing of dissimilar materials onto single chips
Covers planar processed laser fabrication leading to wafer level automated testing
Discusses optimization of devices for integration, including a detailed treatment of the vertical emitting laser and theoretical and experimental coverage of optimization of photodetectors for integration into receiver chips
Describes design approaches for multifunctional chips, including photonic circuits for all-optical networks and the design of integrated optoelectronic chips with lasers, photodiodes, and electronic ICs
Covers the infrastructure needed to support an integrated technology, including automated design systems which treat both optical and electrical circuits, and multichip packaging approaches for both optical and IC chips

✦ Table of Contents


Content:
Front Matter, Page iii
Copyright, Page iv
Contributors, Pages xi-xii
Preface, Pages xiii-xv, Mario Dagenais, Robert F. Leheny, John Crow
Chapter 1 - TELECOMMUNICATIONS SYSTEM APPLICATIONS FOR OPTOELECTRONIC INTEGRATED CIRCUITS, Pages 3-38, M.S. Goodman, E. Arthurs
Chapter 2 - COMPUTING SYSTEM APPLICATIONS, Pages 39-80, John Crow, J.M. Jaffe, M.W. Sachs
Chapter 3 - MOLECULAR BEAM EPITAXY WITH GASEOUS SOURCES, Pages 83-120, Charles W. Tu
Chapter 4 - ORGANOMETALLIC CHEMICAL VAPOR DEPOSITION FOR OPTOELECTRONIC INTEGRATED CIRCUITS, Pages 121-144, R. Bhat
Chapter 5 - LATTICE-MISMATCHED HETEROEPITAXY, Pages 145-209, S.F. Fang, Hadis MorkoΓ§
Chapter 6 - FOCUSED ION BEAM FABRICATION TECHNIQUES FOR OPTOELECTRONICS, Pages 213-256, L.R. Harriott, H. Temkin
Chapter 7 - FULL-WAFER TECHNOLOGY FOR LARGE-SCALE LASER FABRICATION AND INTEGRATION, Pages 257-296, P. Vettiger, P. Buchmann, O. Voegeli, D.J. Webb
Chapter 8 - EPITAXIAL LIFT-OFF AND RELATED TECHNIQUES, Pages 297-313, Winston K. Chan, Eli Yablonovitch
Chapter 9 - ELECTRONICS FOR OPTOELECTRONIC INTEGRATED CIRCUITS, Pages 317-337, John R. Hayes
Chapter 10 - LASERS AND MODULATORS FOR OEICS, Pages 339-417, Larry A. Coldren
Chapter 11 - PHOTODETECTORS FOR OPTOELECTRONIC INTEGRATED CIRCUITS, Pages 419-444, Joe C. Campbell
Chapter 12 - CURRENT STATUS OF OPTOELECTRONIC INTEGRATED CIRCUITS, Pages 447-488, O. Wada, John Crow
Chapter 13 - SCALING AND SYSTEM ISSUES OF OEIC DESIGN, Pages 489-528, R. Bates, John Crow, J. Ewen, D. Rogers
Chapter 14 - MODELING FOR OPTOELECTRONIC INTEGRATED CIRCUITS, Pages 529-555, R. Baets, D. Botteldooren, G. Morthier, F. Libbrecht, P. Lagasse
Chapter 15 - PHOTONIC INTEGRATED CIRCUITS, Pages 557-626, T.L. Koch, U. Koren
Chapter 16 - PACKAGING INTEGRATED OPTOELECTRONICS, Pages 627-643, John Crow
Chapter 17 - FUTURE OEICs: THE BASIS FOR PHOTOELECTRONIC INTEGRATED SYSTEMS, Pages 645-675, Izuo Hayashi
Index, Pages 677-686
Quantum Electronicsβ€”Principles and Applications, Page ibc1


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