There are 7 repositories under radiative-transfer topic.
A collection of interactive lecture notes and assignments in Jupyter notebook format.
RTE+RRTMGP is a set of codes for computing radiative fluxes in planetary atmospheres.
Eradiate: a next-generation radiative transfer model for Earth observation applications
(REOS) Radar and ElectroOptical Simulation Framework written in Fortran.
Range Software - Finite Element Analysis
3D Monte Carlo radiative transfer code
A benchmark dataset for Machine Learning emulation of atmospheric radiative transfer in weather and climate models (NeurIPS 2021 Datasets and Benchmarks Track)
A line-by-line longwave radiation code for planetary atmospheres.
Extensible spacetime agnostic general relativistic ray-tracing (GRRT).
A simplified toy-model to simulate radiative transfer in the atmosphere and compute the radiative forcing as a function of CO2 amount.
A high performance framework for radiation therapy simulation and numerical solutions for kinetic equations.
C++ Monte Carlo photoionization and radiation hydrodynamics code.
Retrieves 3D cloud properties from multi-angle images of reflected solar radiation
pyOSOAA is a python interface for the Ocean Successive Orders with Atmosphere - Advanced (OSOAA) radiative transfer.
A modern software library for simulating radiation transport.
Discrete Ordinates Solver for the (1D) Radiative Transfer Equation in a single or multi-layer plane-parallel atmosphere. Coded entirely in Python 3. Based on Stamnes' FORTRAN DISORT (see references in the Jupyter Notebook) and has its main features.
For the investigation of NLTE glowy stuff. A python framework for constructing solar NLTE radiative transfer simulations in one- and two-dimensional geometries, with an optimised C++ backend.
A Python library for spectral modelling and RADEX
3D non-LTE Monte Carlo radiative transfer for supernovae/kilonovae
A Python package for helping to compute input arrays to DISORT.
A first order radiative transfer model for soil- and vegetation related parameter retrievals from radar-data
The Juelich Rapid Spectral Simulation Code (JURASSIC) is a fast infrared radiative transfer model for the analysis of atmospheric remote sensing measurements.
Modern Python & C++ API for the radiative transfer solver DISORT. Parallelized with PyTorch tensors; compile-free with: pip install pydisort.