
Introduction to optical waveguide analysis
Solving maxwell's equations and shrödinger equation
Résumé
This volume thoroughly details modern and widely accepted methods for designing the optical waveguides used in telecommunications systems. It offers a straightforward presentation of the sophisticated techniques used in waveguide analysis and enables a quick grasp of modern numerical methods with easy mathematics. The book is intended to guide the reader to a comprehensive understanding of optical waveguide analysis through self-study. This comprehensive presentation includes:
- An extensive and exhaustive list of mathematical manipulations
- Detailed explanations of common design methods: finite element method (FEM), finite difference method (FDM), beam propagation method (BPM), and finite difference time-domain method (FD-TDM)
- Explanations for numerical solutions of optical waveguide problems with sophisticated techniques used in modern computer-aided design (CAD) software
- Solutions to Maxwell's equations and the Schrödinger equation
The authors provide excellent self-study material for
practitioners, researchers, and students, while also
presenting detailed mathematical manipulations that can be
easily understood by readers who are unfamiliar with them.
Introduction to Optical Waveguide Analysis presents modern
design methods in a comprehensive and easy-to-understand
format.
Contents
- Fundamental Equations
- Analytical Methods
- Finite-Element Methods
- Finite-Difference Methods
- Beam Propagation Methods
- Fine-Difference Time-Domain Method
- Schrödinger Equation
- Appendix A Vectorial Formulas
- Appendix B Integration Formula For Area Coordiantes
- Index
Caractéristiques techniques
PAPIER | |
Éditeur(s) | Wiley |
Auteur(s) | Kenji Kawano, Tsutomu Kitoh |
Parution | 01/08/2001 |
Nb. de pages | 276 |
Format | 15,5 x 23,5 |
Couverture | Relié |
Poids | 333g |
Intérieur | Noir et Blanc |
EAN13 | 9780471406341 |
ISBN13 | 978-0-471-40634-1 |
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