Optoelectronic Devices

Design, Modeling, and Simulation

by: Xun Li

Optoelectronic Devices
Author: Xun Li

Publisher: Cambridge University Press (Virtual Publishing)

List price: $ 92.00

Deastore.com price (info) € 66.10

Format: Electronic book text

Publication date: 03 September 2009

Availability: (info) Not available

ISBN: 0511577494 ISBN 13: 9780511577499 Publisher suggests as an alternative: Optoelectronic Devices (2009)

Optoelectronic Devices by Xun Li

Get hands-on experience of optoelectronic device design and simulation using numerical methods. Top page

Complete description

With a clear application focus, this book explores optoelectronic device design and modeling through physics models and systematic numerical analysis. By obtaining solutions directly from the physics-based governing equations through numerical techniques, the author shows how to develop new devices and how to enhance the performance of existing devices. Semiconductor-based optoelectronic devices such as semiconductor laser diodes, electroabsorption modulators, semiconductor optical amplifiers, superluminescent light emitting diodes and their integrations are all covered. Including step-by-step practical design and simulation examples together with detailed numerical algorithms, this book provides researchers, device designers and graduate students in optoelectronics with the numerical techniques to obtain solutions for their own structures. Top page

General info

Publisher & Imprint: Cambridge University Press (Virtual Publishing)

City: Cambridge

Pages: 374

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Age recommended: Professional and scholarly

Subject Indexing & Classification Dewey: 621.381045

Summary Optoelectronic Devices 1. Introduction; 2. Optical models; 3. Material model I - semiconductor band structures; 4. Material model II - the optical gain; 5. Carrier transport and thermal diffusion models; 6. Solution techniques for optical equations; 7. Solution techniques for material gain equations; 8. Solution techniques for carrier transport and thermal diffusion equations; 9. Numerical analysis of device performance; 10. Design and modeling examples of semiconductor laser diodes; 11. Design and modeling examples of other solitary optoelectronic devices; 12. Design and modeling examples of integrated optoelectronic devices; Appendices. Top page

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