Many problem sets have been updated, the answers to which are available in an all—new Solutions Manual for instructors.
4 editions of this work
Comprehensive, timely, and practical, Physics of Photonic Devices is an invaluable textbook for advanced undergraduate and graduate courses in photonics and an indispensable tool for researchers working in this rapidly growing field. We request your telephone number so we can contact you in the event we have difficulty reaching you via email. We aim to respond to all questions on the same business day. The most up—to—date book available on the physics of photonic devices This new edition of Physics of Photonic Devices incorporates significant advancements in the field of photonics that have occurred since publication of the first edition Physics of Optoelectronic Devices.
Chapter 1: Introduction. Chapter 2: Basic Semiconductor Electronics. Chapter 3: Basic Quantum Mechanics. Appendix 3A. Chapter 5: Electromagnetics and Light Propagation. Appendix 5A Kramers—Kronig Relations.
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Chapter 7: Optical Waveguide Theory. Chapter 8: Coupled Mode Theory.
Physics of Photonic Devices. 2nd Edition. Wiley Series in Pure and Applied Optics
Chapter 9: Optical Processes in Semiconductors. Andreani, A. Pasquarello, and F. Bassani , Hole subbands in strained GaAs- Ga 1?
Physics of Optoelectronic Devices (Wiley Series in Pure and Applied Optics)
Chuang , Physics of optoelectronic devices Wiley series in Pure and Applied optics , Bastard and J. Chang and S. Chelikowsky and M. Cohen , Nonlocal pseudopotential calculations for the electronic structure of eleven diamond and zinc-blende semiconductors , Physical Review B , vol. Luttinger and W. Kohn , Motion of electrons and holes in perturbed periodic elds , Physical Review , vol. Bir and G. Chao and S. Chuang , Spin-orbit-coupling eects on the valence-band structure of strained semiconductor quantum wells , Physical Review B , vol.
Ames , Numerical methods for partial dierential equations , Chuang , Ecient band-structure calculations of strained quantum wells , Physical Review B , vol.
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Gershoni, C. Henry, and G. Baraff , Calculating the optical properties of multidimensional heterostructures: Application to the modeling of quaternary quantum well lasers , IEEE Journal of Quantum Electronics , vol. Fletcher , Computational Galerkin Methods , Debaisieux, G. Herve-gruyer, M. Filoche, S. Bouchoule, and J. Electromagnetics and Light Propagation.
Light Propagation in Anisotropic Media. Optical Waveguide Theory. Fundamentals of Semiconductor Lasers. Advanced Semiconductor Lasers. Direct Modulation of Semiconductor Lasers. Electrooptic and Acoustooptic Modulators. Electroabsorption Modulators.