課程介紹

課程大綱 OS7168 光電電磁原理 更新日期: 2018-03-14
課程目標
As part of this course, students will develop a solid understanding of the Electromagnetic Optics, Guided-Wave Optics, and Grating Diffraction.

修習條件

主要教本
Lecture notes [available on LMS (http://lms.ncu.edu.tw) before the class starts]

There will be no textbook for this course; however, the teaching materials will be selected from the books listed below.

1. Donald. L. Lee, Electromagnetic Principles of Integrated Optics (Wiley 1986).
2. S. O. Kasap, Optoelectronics and Photonics - Principles and Practices, 2nd Ed. (Pearson, 2013).
3. B. E. A. Saleh and M. C. Teich, Fundamentals of Photonics (John Wiley & Sons, 2007).
4. S.-L. Chuang, Physics of Photonic Devices, 2nd Ed. (John Wiley & Sons, 2009).
5. A. Yariv and P. Yeh, Optical Waves in Crystals (Wiley Interscience 2005).
6. T. K. Gaylord and M. G. Moharam, Proc. IEEE, 73, 894 (1985)

References
1. David K. Cheng, Field and Wave Electromagnetics, 2nd ed. (Addison-Wesley, 1989).
2. Clifford R. Pollock and Michal Lipson, Integrated Photonics (Kluwer 2003).
3. Chin-Lin Chen, Fundamentals of Guided-Wave Optics (Wiley, 2007).
4. P. Yeh, Optical Waves in Layered Media (Wiley Interscience 2002).
5. Other references listed in each chapter (see the lecture notes)

內容大綱
1. Basic Electromagnetic Theory
Maxwell’s Equations, Constitutive Relations, Equation of Continuity, Electromagnetic Boundary Conditions, Time-Harmonic Fields, Duality Principle in Electromagnetics, Poynting Theorem, Reciprocity Theorem

2. Electromagnetic Optics
Introduction, EM Waves in Dielectric Media, Harmonic Fields, Elementary EM Waves, Absorption and Material Dispersion, Pulse Propagation in Dispersive Media

3. Optical Waveguide Theory
Introduction, Review of Total Internal Reflection, The Goos-Haenchen Shift, Plane Wave Solutions to 2-D EM Problem, Planar Dielectric Slab Waveguide, Dispersion Relation, Rectangular Dielectric Waveguides, The Effective Index Method, Modal and Waveguide Dispersion in Planar Waveguides, Surface Plasmon Waveguides

4. Optical Fibers
Step-Index Optical Fiber, Numerical Aperture, Dispersion in Single-Mode Fibers, Dispersion Modified Fibers and Compensation, Bit Rate/Dispersion/Electrical and Optical Bandwidth, The Graded-Index Optical Fiber, Attenuation

5. Coupled-Mode Theory
Waveguide Couplers, Waveguide Symmetry Properties, Lorentz Reciprocity Theorem, Mode Orthogonality Relations Coupled Equation of Motion, Coupled Waveguides, Distributed-Feedback Structures

6. Grating Diffraction
Classification of Gratings, Grating Recording, Canonical Form of Grating Diffraction, Floquet Condition, Grating Equations, Gragg Condition, Two-Wave Coupled-Wave Analysis.





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