An equivalent network method for the analysis of nonuniform period structures
β Scribed by Jin Jei Wu
- Publisher
- John Wiley and Sons
- Year
- 1997
- Tongue
- English
- Weight
- 177 KB
- Volume
- 15
- Category
- Article
- ISSN
- 0895-2477
No coin nor oath required. For personal study only.
β¦ Synopsis
The characteristics of guided wa¨es scattered by nonuniform wa¨eguide gratings are systematically in¨estigated with the use of an equi¨alent network method. This procedure is based on a combination of the multimode network theory and the rigorous mode-matching method. Conca¨e Bragg gratings and bent wa¨eguide gratings are taken as examples to demonstrate the present approach, and numerical results are gi¨en to illustrate their potential for millimeter-wa¨e and optical integrated circuit applications.
π SIMILAR VOLUMES
Various approaches are proposed and compared for analysing the effects of structural irregularities and parameter uncertainties on the dynamics of finitely long, one-dimensional, mono-coupled, nearly periodic assemblies with and without structural damping. Computational concerns are raised in regard
## Abstract Subgraph isomorphism and maximum common subgraph isomorphism algorithms from graph theory provide an effective and an efficient way of identifying structural relationships between biological macromolecules. They thus provide a natural complement to the pattern matching algorithms that a
beams in dynamic two-beam coupling with any intensity modulation depth and any constant light excitation efficiency. Such an exact solution can be distinguished for the straight Ε½ . formulation for unit light excitation p s 1 , the hidden formulation with an additional parameter for constant excita-