ADDA - light scattering simulator based on the discrete dipole approximation
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Updated
Mar 30, 2026 - C
ADDA - light scattering simulator based on the discrete dipole approximation
A Volume Integral Equation-Fast Fourier Transform Method for Modeling Optical Response of Nanostructures
Benchmark data for the DDA solver comparison paper
Benchmark framework for cross-verification of DDA solvers
Simple Python scripts for interfacing with ADDA to calculate the plasmon of nanoparticles
Command-line interface wrapper for DDSCAT
Scientific computing toolkit for simulating charged nanoparticle scattering and optical signatures. Combines electromagnetic scattering solvers, surface conductivity models, and parallelized Rust computation for nanophotonics and materials research.
The code that is used to model the LSP resonances of quasistatic concentric-shell Drude-metal nanoparticles.
A python code for the discrete dipole approximation for scattering calculations using a block-type iterative solver
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