Paper
12 November 1999 Efficient and accurate numerical analysis of multilayer planar optical waveguides
Chengkun Chen, Pierre Berini, Dazeng Feng, Velko Peyov Tzolov
Author Affiliations +
Abstract
This paper presents a numerical method for computing the propagation constant of electromagnetic modes supported for multilayer planar optical waveguides. We report a method for solving the dispersion equation for a guided wave structure of interest in the complex plane via Chauchy's integration. The method is applicable to lossless, lossy and ARROW waveguide structures and can handle both leaky and guided modes. Contrary to the methods currently published in the literature, which are based on a numerical derivative of the dispersion equation, we propose an analytical derivative for the latter. This has a double impact: improved accuracy and reduced CPU time. The specific integration contour for leaky modes will be discussed. The results are in excellent agreement with several results published in the literature.
© (1999) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Chengkun Chen, Pierre Berini, Dazeng Feng, and Velko Peyov Tzolov "Efficient and accurate numerical analysis of multilayer planar optical waveguides", Proc. SPIE 3795, Terahertz and Gigahertz Photonics, (12 November 1999); https://doi.org/10.1117/12.370144
Lens.org Logo
CITATIONS
Cited by 7 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Waveguides

Dispersion

Wave propagation

Numerical analysis

Radio propagation

Refractive index

Chromium

Back to Top