A reference/text that introduces a variety of spectral computational techniques, including k-space theory, Floquet theory, and beam propagation. Contents include mathematical principles, spectral state variable formulation for planar systems, planar diffraction gratings, and more.
Computational methods for electromagnetic and optical systems
โ Scribed by John M Jarem; Partha P Banerjee
- Publisher
- Marcel Dekker
- Year
- 2000
- Tongue
- English
- Leaves
- 437
- Series
- Optical engineering (Marcel Dekker, Inc.), v. 69
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
This text introduces and examines a variety of spectral computational techniques - including k-space theory, Floquet theory and beam propagation - that are used to analyze electromagnetic and optical problems.
โฆ Table of Contents
Content: From the Series Editor; Preface; Contents; Mathematical Preliminaries; Spectral State Variable Formulation for Planar Systems; Planar Diffraction Gratings; The Split-Step Beam Propagation Method; Rigorous Coupled Wave Analysis of Inhomogeneous Cylindrical and Spherical Systems; Modal Propagation in an Anisotropic Inhomogeneous Wavegude and Periodic Media; Application of Rigorous Coupled Wave Analysis to Analysis of Induced Photorefractive Gratings; Index.
Abstract: This text introduces and examines a variety of spectral computational techniques - including k-space theory, Floquet theory and beam propagation - that are used to analyze electromagnetic and optical problems
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A reference/text that introduces a variety of spectral computational techniques, including k-space theory, Floquet theory, and beam propagation. Contents include mathematical principles, spectral state variable formulation for planar systems, planar diffraction gratings, and more.
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