FDTD Maxwell and micromagnetics field solver in CUDA
-
Updated
Apr 25, 2020 - MATLAB
8000
FDTD Maxwell and micromagnetics field solver in CUDA
A structured reconstruction of Maxwell’s electromagnetic formalism using quaternion mathematics, providing a foundation for exploring the FiRSTT theoretical framework and future numerical simulations.
Example of usage for gmsh SDK
Finite-difference time-domain (FDTD) method for modeling computational electrodynamics
A ray tracing code in slab geometry based on the work of J. P. Bizarro, H. Hugon and R. Jorge, 2018 (https://journals.aps.org/pra/abstract/10.1103/PhysRevA.98.023847)
ERMES 20.0.3 is an open-source tool that solves Maxwell's equations in the frequency domain using the Finite Element Method (FEM). It computes electromagnetic fields from static to high-frequency applications in complex 3D geometries and simulates wave propagation in materials such as plasma.
An ongoing project on developing a parallel 2D2P Maxwell — Vlasov — Boltzmann solver on adaptive meshes
Computes eigen frequencies in a 1D micro-cavity
ERMES 20.0 is an open-source tool that solves Maxwell's equations in the frequency domain using the Finite Element Method (FEM). It computes electromagnetic fields from static to high-frequency applications in complex 3D geometries and simulates wave propagation in materials such as plasma.
Vlasov-Maxwell solver in 2 dimensions with non uniform mesh
ERMES 20.0.4 is the latest release of an open-source tool that solves Maxwell's equations in the frequency domain using the Finite Element Method (FEM). It computes electromagnetic fields from static to high-frequency applications in complex 3D geometries and simulates wave propagation in materials such as plasma.
Frequecy domain Maxwell eq.
3-D Finite Difference Time Domain Methods for Plane Wave Propagation in a Vacuum.
Computes eigen frequencies in a 2D micro-cavity
Python Implementation of Aperiodic Fourier Modal Method for solving Maxwell equations.
This code propagates Maxwell equations using the FDTD method and couples them with the evolution of molecules described at different levels of theory.
Simulation and Optimization Library for Integrated Optics in Julia.
finite difference based eigensolving for Maxwell's equations and photonic structures
Fortran-Julia syntax comparison and Maxwell Solver in 2D using Yee numerical scheme and MPI topology
Add a description, image, and links to the maxwell-equations-solver topic page so that developers can more easily learn about it.
To associate your repository with the maxwell-equations-solver topic, visit your repo's landing page and select "manage topics."