Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

A Novel Numerical Approach for the Analysis of 2D Photonic Crystals: The Cell Method

Not Accessible

Your library or personal account may give you access

Abstract

In the study of the properties of photonic band gap materials is important to find if some bands of frequencies exist (photonic band gap) where the propagation of the electromagnetic waves is prohibited in all the directions. In order to find these frequencies, that is to solve an eigenvalues problem, a lot of methods have been proposed up to now. The Plane Wave Expansion Method (PWE) [1] works with inhomogeneous media having curved shapes and deals with large not sparse hermitian matrices. The Finite Elements Method (FEM) works with inhomogeneous media having curved shapes as well and a generalized eigenvalues problem with large sparse (quasi band diagonal) matrices has to be solved. The Finite Difference Method (FD) works with inhomogeneous media without curved shapes and deals with large sparse (quasi band diagonal) hermitian matrices and, for the structure of these matrices, the eigenvalues problem can be solved in a very efficient way [2]. The Cell Method (CM) [3], with the microcell interpolation scheme [4], works with inhomogeneous media having curved shapes, like FEM, and deals with large sparse (quasi band diagonal) hermitian matrices in non generalized eigenvalues problems, like FD. Moreover, by means of an appropriate numbering of the nodes, it is possible to solve the eigenvalues problem in the same efficient way like FD.

© 2002 Optical Society of America

PDF Article
More Like This
Band-Structure Analysis of 2D Non-Diagonal Anisotropic Photonic Crystals by the Finite Element Method

Sen-ming Hsu, Ming-mung Chen, and Hung-chun Chang
IMB2 Integrated Photonics and Nanophotonics Research and Applications (IPR) 2007

Analysis of 2-D Photonic Crystals Involving Liquid Crystals Using the Finite-Difference Frequency-Domain Method

Ming-mung Chen, Sen-ming Hsu, and Hung-chun Chang
IMB3 Integrated Photonics and Nanophotonics Research and Applications (IPR) 2007

Construction of Band Edge Diagrams for 2D Photonic Crystals with Arbitrary 3D Anisotropy by the Finite Element Method

Sen-ming Hsu and Hung-chun Chang
IMF4 Integrated Photonics and Nanophotonics Research and Applications (IPR) 2008

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.