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  • FreeFEM++ is a very good Finite Element Method (FEM) engine program which can solve Poisson or Helmholtz equation One example with microwave is they ex 3.11 of their doc. it is solving Helmholtz equation, or should I say a particular case of the Helmhotz equations.
  • Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Distributed memory parallelism on any system supporting the MPI standard.
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems.
Mar 01, 2010 · This paper describes Meep, a popular free implementation of the finite-difference time-domain (FDTD) method for simulating electromagnetism. In particular, we focus on aspects of implementing a full-featured FDTD package that go beyond standard textbook descriptions of the algorithm, or ways in which Meep differs from typical FDTD implementations.
Interactive, hands-on sessions will introduce participants to setting up and launching electromagnetic simulations using the state-of-the-art finite-difference time-domain (FDTD) software package Meep, originally developed at MIT. Meep supports a wide range of electromagnetic design and modeling. No prior experience is required.This book is dedicated to Prof. Dr. Heinz Gerhäuser on the occasion of his retirement both from the position of Executive Director of the Fraunhofer Institute for Integrated Circuits IIS and from the Endowed Chair of Information Technologies with a Focus on Communication Electronics (LIKE) at the Friedrich-Alexander-Universität Erlangen-Nürnberg.
containerized meep (fdtd) application, for scientific computing This docker image provides a clean install of Ubuntu 14.04, MEEP, and python-meep built with openmpi. The purpose of this software is to save useres the time and hassle of installing MEEP with python bindings.
The idea came out of MIT MEEP[26], where the entire compu tational do- main is divided into a number of ‘chunks’ and each ‘chunk’ wil l contain a dif- 7.1 Set Basic Parameters
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He has a masters in Computation for Design and Optimization from MIT and completed his undergraduate studies, with honors, in Engineering Science at the University of Toronto. Prior to launching Simpetus, Ardavan worked with Professors Susumu Noda at Kyoto University and Stephen R. Forrest at the University of Michigan on leveraging MEEP to ...
One of the approaches to solve Maxwells equation is by Finite Difference Time Domain (FDTD) approach. Since FDTD is a time domain approach, the response for a wide range of frequencies can be obtained with a single simulation.
I have an idea of how to simulate for it using MIT's MEEP for the waveguide structures I am interested in, but the sheer number of simulations I will need to run will eat up weeks of time just for the few cases I want to check (because I strongly suspect there is not only a radius dependance, but also an angular dependance).
This list is for discussions related to the Meep finite-difference time-domain (FDTD) electromagnetism package. You must subscribe to the list in order to post. To see the collection of prior postings to the list, visit the meep-discuss Archives.
Finite-difference time-domain (FDTD) is a popular computational electrodynamics modeling technique. It is considered easy to understand and easy to implement in software. Since it is a time-domain method, solutions can cover a wide frequency range with a single simulation r
Mar 17, 2013 · MEEP, a finite-difference time-domain (FDTD) simulation software package developed at MIT, was also included in APSYS using special data interface. Finite-difference time-domain calculates propagation of electromagnetic wave (light wave in our work) in space. magnetic fields. MEEP is a simulation tool developed by MIT for design, model and stimulate various photonic crystal structures [9]. It is a time domain tool and implements the FDTD method. The transmission and the reflection spectrum are obtained using the MEEP tool [10]. MEEP solves the Poynting
Labels: animation, FDTD ... The video is inspired from a talk given by MIT Professor John Guttag within MITx - 6.00.2x. ... (18) McNeil Point (1) Mecca (4) MEEP (1 ...
Why MEEP? In this course, we will be using MEEP (this cute name stands for MIT Electromagnetic Equation Propagation). Why? Well first of all, it's a free, unlike its paid-for counterparts (like Lumerical).
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  • Finite-difference time-domain (FDTD) is a popular computational electrodynamics modeling technique. It is considered easy to understand and easy to implement in software. Since it is a time-domain method, solutions can cover a wide frequency range with a single simulation run.
    Finite-difference time-domain (FDTD) or Yee's method (named after the Chinese American applied mathematician Kane S. Yee, born 1934) is a numerical analysis technique used for modeling computational electrodynamics (finding approximate solutions to the associated system of differential equations).
  • 20. MEEP is a free finite-difference time-domain (FDTD) simulation software package developed at MIT, http://abi-nitio.mit.edu/wiki/index.php/Meep 21. C. P. Michael, M. Borselli, T. J. Johnson, C. Chrystal, and O. Painter, "An optical fiber-taper probe for wafer-scale microphotonic device characterization," Opt. Express 15, 47 45–52 (2007). 22. H.
    Meep - Massachusetts Institute of Technology. Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems, along with our MPB eigenmode package. Free software under the GNU GPL.Simulation in 1d, 2d, 3d, and cylindrical coordinates.

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  • Using the MIT Electromagnetic Equation Propagation (MEEP) FDTD code. Includes instructions for using meep-mpi.
    MEEP: A flexible free-software package for electromagnetic simulations by the FDTD method AF Oskooi, D Roundy, M Ibanescu, P Bermel, JD Joannopoulos, ... Computer Physics Communications 181 (3), 687-702 , 2010
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 On 7/19/07, Gopala Krishna <[email protected]> wrote: > 3) Should qucs-qt4 be compatible with qt4.2 ? The main reason for this > is the xml stream classes introduced in qt4.3 are very convinient and > i want to simplify my task if we dont support qt4.2.
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 Computer simulations of photonic crystal waveguides were performed using MIT Electromagnetic Equation Propagation (Meep) for finite-difference time-domain (FDTD) simulations in both two- and three-dimensions.
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 Meep – FDTD-Simulationssoftware, entwickelt am MIT Secondspace – Simulation von Wellen (Raum und Zeit diskret), Berechnung durch Grafikkarte Solitonen - als Teilchen im Raum, Fortsetzung Rechnender Raum Contents: Subpixel Smoothing of Curved Material Surfaces. Wave Source Conditions and Local Density of States. Perfectly Matched Layers and Adiabatic Absorbers. Plasmonics. Resonant Device Modeling and Design. Metamaterials and Negative Refraction. Transformation Optics. Meep (MIT FDTD Free Software). Biophotonics. Lithography. Computational ...
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 [20] Ardavan F., Oskooi, David, Roundy, Mihai, Ibanescu, et al. “MEEP: A flexible free-software package for electromagnetic simulations by the FDTD method”. Computer Physics Communications 181 .3 ( 2010 ), pp. 687–702 (cit. on p. 32).
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 Actually I already downloaded the meep tarball from the MIT website and had a play with it earlier. – steeldriver Dec 16 '14 at 22:35 | show 3 more comments 2 Answers 2 FDTD bedeutet, dass z. B. eine kleine Welt mit 360 × 240 Pixeln entsteht. Die wenigen in der Simulation verwendeten Formeln sind in dieser Welt Weltformeln. Der Autor der Simulation kann durch die Initialisierung des Mediums (Hauptspeicher) festlegen, was sich zur Laufzeit ereignen wird.
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 Meep is a free finite-difference time-domain (FDTD) simulation software package developed at MIT (initially by David Roundy) to model electromagnetic systems, along with the MPB eigenmode package.
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 Using the MIT Electromagnetic Equation Propagation (MEEP) FDTD code. Includes instructions for using meep-mpi.
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 Jan 27, 2013 · Finite difference time domain (FDTD) simulations of the fibers' optical performance were carried out on a high performance computing cluster using the MIT electromagnetic equation propagation software package (MEEP) 36 to explain the complexity of the measured dispersion diagrams and to predict the change in optical properties due to a ...
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 All of the above material definitions in one file. This can be included in a meep .ctl file with the line (include "meep-metals-inc") (meep-metals-inc) Script to plot the above. (meep_drude_test.tar.gz) Changes to this Document. 10/10/2011 Fixed incorrect plot units (Georg Wachter). Bibliography. 1
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    Capture Meep and MPB output in Python notebooks (#891, Add optional meep.quiet() parameter to the Python interface . Python evaluation of materials ε(ω) and μ(ω) . Experimental multithreading support for near2far calculation and other speedups . Add stop_after_walltime and stop_on_interrupt in Python .
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    Finite Difference Time Domain (FDTD) method has been used for the analysis. MEEP (MIT Electromagnetic Equation Propagation) simulation tool has been used for modeling and designing of photonic crystal ring resonator structure. The effect of periodic and disordered photonic structures on the absorption efficiency of amorphous and crystalline Silicon thin-film solar cells is investigated numerically. We show that disordered patterns possessing a short-range correlation in the position of the holes yield comparable, or even superior, absorption enhancements than periodic (photonic crystal) patterns. This work provides ...
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    I have an idea of how to simulate for it using MIT's MEEP for the waveguide structures I am interested in, but the sheer number of simulations I will need to run will eat up weeks of time just for the few cases I want to check (because I strongly suspect there is not only a radius dependance, but also an angular dependance). Meep: A flexible free-sof tw are package for electromag netic simulations by the FDTD method The MIT Faculty has made this article openly available.
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    finite-difference time-domain fonts foreign lanaguages: G. gcalcli GCC suite git Gnuplot go ... Meep Mendeley MIT Photonic-Bands MKL modules Molecular Dynamics MOLGW ... An optical structure and a system includes a Hyperuniform Disordered Solid (“HUDS”) structure and a waveguide. The HUDS structure is formed by walled cells organized in a lattice. Here, I demonstrate how such advances in finite-difference time-domain (FDTD) methods for computational electromagnetism via an open-source software package known as MEEP can lead to entirely new designs for light trapping in nanostructured thin-film silicon solar cells as well as light extraction in nanostructured organic light-emitting diodes (OLEDs).
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  • Mar 01, 2016 · MEEP is Maxwell's Electromagnetic Equation Propagation simulation tool. The application of FDTD method is computation of transmission spectrum. MEEP is simulation package for the computation of transmission/reflection spectra, field patterns, resonant modes & frequencies in dielectric structures.