Showing 34 open source projects for "electromagnetic"

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  • 1
    Smilei

    Smilei

    Particle-in-cell code for plasma simulation

    Smilei is an open-source electromagnetic Particle-In-Cell code for kinetic plasma simulation. It is designed for high-performance computing and can run on modern supercomputing architectures. The software is co-developed by physicists and computer scientists, which gives it both strong numerical physics capabilities and serious parallel-performance engineering. Smilei supports a wide range of plasma studies, including laser-plasma interaction, accelerator physics, space physics, and astrophysical plasmas. ...
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  • 2
    GNU NEC is an Open Source implementation of the Numerical Electromagnetic Code in C++.
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  • 3
    QuForge-Industrial-Studio

    QuForge-Industrial-Studio

    Professional 10-qubit Quantum EDA platform for hardware-aware circuit

    ...While most simulators focus on pure mathematical states, QuForge introduces Hardware-Aware Design, allowing users to simulate their logic on a virtual 10-qubit processor ring.The tool provides a high-fidelity environment where users can account for real-world physical limitations such as $T_1$ relaxation times, $T_2$ dephasing, and Electromagnetic Interference (EMI). Whether you are a student learning quantum logic or a researcher optimizing pulse timing, QuForge offers the visual and diagnostic tools necessary to build "hardware-ready" quantum circuits.From interactive 3D Bloch Spheres to automated transpilation, QuForge Industrial Studio is built to streamline the industrial quantum development workflow.
    Downloads: 0 This Week
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  • 4
    MaxFEM

    MaxFEM

    Software for electromagnetic simulation

    MaxFem is an open software package for electromagnetic simulation by using finite element methods. The package can solve problems in electrostatics, direct current, magnetostatics and eddy-currents. Since version 0.4.0, MaxFEM requires Python 3. We have moved the installers to the MaxFEM website (see below). In order to improve MaxFEM, we will require you to fill out a simple form before downloading them.
    Downloads: 5 This Week
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  • 5

    xfemm

    Cross platform electromagnetics finite element analyisis based on FEMM

    Cross platform electromagnetics finite element analysis code, with very tight integration with Matlab/Octave. Development of xfemm now takes place on Github here: https://github.com/REOptimize-Systems/xfemm xfemm is a refactoring of the core algorithms of the popular Windows-only FEMM (Finite Element Method Magnetics, www.femm.info) to use only the standard template library and therefore be cross-platform. The codes can be used as a library, standalone executables, or through the...
    Downloads: 12 This Week
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  • 6
    A Monte Carlo program for the simulation of electromagnetic cascades initiated by high-energy photons and electrons interacting with extragalactic background light.
    Downloads: 2 This Week
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  • 7

    Hysteresis

    Preisach type hysteresis models implemented in Matlab.

    The Preisach function is considered as a product of two special one dimensional functions, which allows the analytical evaluation of the Everett integral. The derived expressions are included in static and dynamic hysteresis models, which are fast enough to be incorporated in electromagnetic software. If you find the codes usefull, please cite the following papers: [1] Zs. Szabó, J. Füzi, "Implementation and Identification of Preisach type Hysteresis Models with Everett Function in Closed Form", Journal of Magnetism and Magnetic Materials, vol. 406, 15 pp. 251–258, 2016. [2] Zs. Szabó, “Preisach Functions Leading to Closed Form Permeability“, Physica B, vol. 372, pp. 61-67, 2006...
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  • 8

    F3DM

    Finite Element Method on 3D Meshes

    ...The minimization is parallelized with OpenMP. Three main features in unstable 1.8.x version (available via GIT): quadratic elements, periodic boundary conditions, and the solver for scalar and electromagnetic wave equations. f3dmgeom is a collection of a few simple tools for creating surface meshes for tetgen. It can handle simple geometries only.
    Downloads: 0 This Week
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  • 9
    Merupu

    Merupu

    Electromagnetic Analysis Software

    Downloads: 0 This Week
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  • 10
    Grid-based Coupled Electron and Electromagnetic field Dynamics (GCEED) is an open-source software package for massively parallel first-principles calculations of electron dynamics in real time and real space. The program codes are written in the Fortran 90/95 language with MPI and OpenMP. Time dependent density functional theory (TD-DFT) calculations can be performed on 100,000 CPU cores of K Computer with high parallel efficiency.
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  • 11

    GMES

    GMES is a free Python package for FDTD electromagnetic simulations.

    GMES is a free finite-difference time-domain (FDTD) simulation Python package developed at GIST to model photonic devices. Its features include simulation in 1D, 2D, and 3D Cartesian coordinates, distributed memory parallelism on any system supporting the MPI standard, portable to any Unix-like system, variuos dispersive ε(ω) models, CPML absorbing boundaries and/or Bloch-periodic boundary conditions, and arbitrary material and source distributions. GMES officially stands for GIST...
    Downloads: 0 This Week
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  • 12
    SINE Isochronic Entrainer

    SINE Isochronic Entrainer

    Free and Open Source Brainwave Entrainment application

    SINE Isochronic Entrainer is a Free and Open Source Brainwave Entrainment application for PC, Android, and HTML5. Brainwave Entrainment is the practice of using sounds, visual stimuli or even electromagnetic fields to alter the frequency of brainwaves. It can be done for several reasons: people with insomnia can take great benefit from it, but it can also be used to improve your attention span, and even simulate the effects of some recreational drugs. The effect is not permanent, and fades away in less than a minute after the stimuli is removed. ...
    Downloads: 0 This Week
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  • 13

    KEMP

    A FDTD solver for electromagnetic wave simulations on a GPU cluster

    KEMP is a fast FDTD solver on a GPU-based cluster. The FDTD (Finite-Difference Time-Domain) method is a popular numerical method for electromagnetic field simulations. KEMP enables hardware accelerations suitable for multi-GPU, multi-core CPU and GPU cluster. KEMP also provide easy configuration by using Python scripting language.
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  • 14

    octave-emf

    Electromagnetic field simulator

    Octave package for electromagnetic circuit and field simulator that computes circuit parameters and specified field distribution.
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  • 15
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  • 16

    Octree Method For Particles

    simulation of particles using an oct-tree

    Similiar to the fast multipole method i guess. I realized that simulating a very large number of particles in e.g. electromagnetic sims can run into growing i/o demands. This is a way to overcome that hurdle. the low-level "octets" can be distributed among a cluster of computers, organized in a grid. they don't have to send each other their whole dataset - only a zoomed out image of it. the further away, the more zoomed out. thus, i/o traffic is greatly reduced.
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  • 17

    WOLFSIM: Wideband Optical FDTD Simulator

    FDTD Electomagnetic Wave Simulation Software

    WOLFSIM is a Finite-Difference Time-Domain electromagnetic simulator, designed to be easy to use but still very powerful, developed and maintained by researchers at North Carolina State University. It's features include: -1D, 2D, and 3D structures that are periodic in 1 or 2 dimensions -Materials that are anisotropic in permittivity and conductivity -Obliquely incident sources -Built-in vectorial (i.e. full polarization) near-to-far-field transformation See these publications for full details on the algorithm: http://www.ece.ncsu.edu/oleg/files-wiki/6/62/SPIE_12_Miskiewicz_wolfsim3D.pdf http://www.ece.ncsu.edu/oleg/files-wiki/1/13/OptExpress07_OH.pdf
    Downloads: 2 This Week
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  • 18
    CAMFR (CAvity Modelling FRamework) is a fast, flexible, friendly full-vectorial Maxwell solver. Although it can tackle general electromagnetic problems, its main focus is on applications in the field of photonics.
    Downloads: 2 This Week
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  • 19
    Electromagnetic cloaking

    Electromagnetic cloaking

    This Matlab code simulates the electromagnetic cloaking

    This Matlab code with the finite element method based Partial Differential Equation Toolbox calculates and simulates the electromagnetic field, when a scatterer (copper) object is cloaked with transformation optics designed metamaterial. This electromagnetic cloaking effect can be studied and demonstrated with this program. The code includes two source type (finite length line source and point source), and two sets of metamaterial parameters (exact and reduced metamaterial parameters). ...
    Downloads: 0 This Week
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  • 20
    A suite of programs for airborne and ground electromagnetic systems that enables users to model and invert for layered earths as well as more complex structures including topography within a limited three-dimensional domain.
    Downloads: 6 This Week
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  • 21
    B-CALM or Belgium California Light Machine is a fast 3D GPU-based Finite-Difference Time-Domain simulation tool for electromagnetic simulations. Please refer to the following paper when citing B-CALM in your work. http://www.springerlink.com/content/d57515v86724u222/
    Downloads: 1 This Week
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  • 22
    All pairs n-body simulation of electromagnetic forces on charged particles, adapted from Nvidia SDK 3.2 sample. Uses Lorentz force from EM fields via the Biot-Savart law for moving charged particles (uses relative velocity). Relativistic.
    Downloads: 0 This Week
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  • 23
    An interactive tool for the simulation and visualization of the electromagnetic activity of the brain.
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  • 24
    A collection of applets used to demonstrate physics and math principles. The applets include: a ray diagram drawing applet, a collision of disks applet, an electromagnetic field mapper and a 3d hydrogen orbital simulation.
    Downloads: 1 This Week
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  • 25
    OpenMie aims to solve electromagnetic scattering problems via the Mie method to provide a benchmark against which to test more general scattering codes. Complete field solutions are given for a number of practical geometries.
    Downloads: 0 This Week
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