Table of Contents:
00:09 Lecture 2.4: Computational Tools for Multilayer Structures
00:25 Photonic Simulations with S4
02:00 Photonic Simulations with S4
03:41 S4: Lua Control Files
05:35 S4: FMM Formulations
07:31 S4: Input
08:30 S4: Output
09:12 S4: Output
10:18 S4: Output
10:55 CAMFR: Rationale
12:37 CAMFR: Basic Strategy
14:01 CAMFR: Eigenmode Decomposition
15:25 CAMFR: Eigenmode Decomposition
17:54 Eigenmode Classification
20:22 Next Class
This video is part of the nanoHUB-U course "Nanophotonic Modeling" (http://nanohub.org/courses/npm)
Nanophotonic Modeling is a five week course that explores the next generation of optical and opto-electronic systems. Systems at the wavelength scale (nanophotonics) or smaller (plasmonics, metamaterials) stand ready to provide new capabilities for the next generation of optical and opto-electronic components, including new types of optical waveguides, lasers, detectors, and solar cells. This course presents advanced methods for simulating such nanophotonic and plasmonic optical systems, including photonic bandstructure solvers, transfer matrix analysis, rigorous coupled wave analysis, finite-difference time domain, and finite-element methods.
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