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source: CEM Lectures 2014年4月1日
Lecture 0 (FDTD) -- Rules and policies This lecture discusses the rules and procedures for this course in finite-difference time-domain. 22:40
Lecture 1 (FDTD) -- Introduction 16:00
Lecture 2 (FDTD) -- MATLAB introduction and graphics 1:14:42
Lecture 3 (FDTD) -- Building geometries in data arrays 45:59
Lecture 4 (FDTD) -- Electromagnetics and FDTD 49:20
Lecture 5 (FDTD) -- Formulation of 1D FDTD 46:03
Lecture 6 (FDTD) -- Implementation of 1D FDTD 52:32
Lecture 7 (FDTD) -- Learning from 1D FDTD 55:49
Lecture 8 (FDTD) -- Review and walkthrough of 1D FDTD 52:59
Lecture 9 (FDTD) -- Examples of 1D FDTD 19:14
Lecture 10 (FDTD) -- Enhancing 1D FDTD 53:22
Lecture 11 (FDTD) -- Formulation of 2D FDTD without PML 36:00
Lecture 12 (FDTD) -- Windowing and grid techniques 55:15
Lecture 13 (FDTD) -- The Perfectly Matched Layer 58:26
Lecture 14 (FDTD) -- 3D Update Equations with PML 22:21
Lecture 15 (FDTD) -- Implementation of 2D FDTD 35:03
Lecture 16 (FDTD) -- Gratings and the Plane Wave Spectrum 50:37
Lecture 17 (FDTD) -- Power flow and PML placement 59:10
Lecture 18 (FDTD) -- Metals and alternative grids 38:57
Lecture 19 (FDTD) -- Periodic structures in FDTD 52:52
Lecture 20 (FDTD) -- Waveguide analysis 46:17
Lecture 22 (FDTD) -- Waveguide simulation walkthrough 41:15
Lecture 23 (FDTD) -- 3D FDTD 35:03
FDTD-1D (Step 1 of 6) -- Basic FDTD Engine 21:19
FDTD-1D (Step 2 of 6) -- Add a simple Gaussian soft source 18:01
FDTD-1D (Step 3 of 6) -- Add perfectly absorbing boundary condition 7:57
FDTD-1D (Step 4 of 6) -- Add a total-field/scattered-field source 9:04
FDTD-1D (Step 5 of 6) -- Add reflectance and transmittance calculations 22:00
FDTD-1D (Step 6 of 6) -- Add a device 17:01
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