fdtd3d is an open source 1D, 2D, 3D FDTD electromagnetics solver with MPI, OpenMP and CUDA support for x64, ARM, ARM64, RISC-V, PowerPC, Wasm architectures
-
Updated
Feb 7, 2026 - C++
fdtd3d is an open source 1D, 2D, 3D FDTD electromagnetics solver with MPI, OpenMP and CUDA support for x64, ARM, ARM64, RISC-V, PowerPC, Wasm architectures
PyPEEC - 3D Quasi-Magnetostatic FFT/PEEC Solver
Photonic crystals in Julia 🦚
An nanophotonics solver for inverse design of metamaterials
Time Domain Maxwell Solver
2D FDTD solver of Maxwell's equations
My lectures for the University of Liverpool PHYS201 (Electromagnetism I) module
An FDFD electromagnetic mode solver for rasterized waveguide cross sections with a Rust core made to be a standard plugin for FDTD engines.
Lecture Notes in Electromagnetics II for Engineering Physics master students at Uppsala University (2022-2026)
Official implementation of STAR-PINN: a Physics-Informed Neural Network (PINN) for solving the 2D time-domain magnetic diffusion (Maxwell) equation in nonlinear materials.
Solving the Eddy Current problem with a multiplicative Schwarz smoothed geometric multigrid preconditioned GMRES solver in deal.II.
FEniCS programs for solving Maxwell's equations in some special cases
ERMES 20.0.3 is an open-source software which solves the Maxwell's equations in frequency domain with the Finite Element Method (FEM). It covers all frequency ranges, from static to high-frequency. It can solve complex 3D geometries and materials like plasma.
Explore computational physics in Threejs VR
Finite-difference time-domain (FDTD) method for modeling computational electrodynamics
FELINES is a predictive lightning protection system that detects Preliminary Breakdown Pulses (PBP) to forecast dangerous Return Strokes (RS) affecting electrical infrastructures. Combining electromagnetic modeling, and machine learning enables the preventive disconnection of vulnerable power and renewable energy systems before damage occurs.
Solving the reduced Maxwells equations in 1D using SBP-SAT and SBP-Projection.
Electrodynamics simulator for calculating the fields and potentials generated by moving point charges and simulating oscillating dipoles with and without periodic mechanical motion.
Ehrenpreis-Palamodov Gaussian Process for Time-Harmonic Maxwell's Equations
Ehrenpreis-Palamodov Gaussian Process for Maxwell's Equations: Boundary Element Method Benchmark for PEC Cavity Reaction Field
Add a description, image, and links to the maxwell-equations topic page so that developers can more easily learn about it.
To associate your repository with the maxwell-equations topic, visit your repo's landing page and select "manage topics."