Name | Version | Summary | date |
paos |
1.2.7 |
PAOS, the Physical Optics Simulator, is a fast, modern, and reliable Python package for Physical Optics studies. It implements Physical Optics Propagation in Fresnel approximation and paraxial ray tracing to analyze complex waveform propagation through both generic and off-axes optical systems. |
2025-01-18 18:48:26 |
diffractio |
1.0.0 |
Optical Diffraction and Interference (scalar and vectorial) |
2025-01-16 11:07:28 |
FlowCyPy |
0.7.0 |
A package for flow-cytometry simulations. |
2025-01-15 14:25:59 |
fmmax |
0.13.0 |
Fourier modal method with Jax |
2025-01-15 05:29:49 |
astroraytrace |
1.0.3 |
Ray tracing for astronomical optics and instruments |
2025-01-07 21:13:19 |
optrace |
0.1.0 |
3D raytracer for optical simulations |
2025-01-03 02:28:02 |
waveorder |
2.2.0 |
Wave-optical simulations and deconvolution of optical properties |
2024-12-22 04:20:05 |
PyOptik |
1.9.9.5 |
A package for refractive index values. |
2024-12-10 14:28:25 |
macromax |
0.2.2 |
Library for solving macroscopic Maxwell's equations for electromagnetic waves in gain-free heterogeneous (bi-)(an)isotropic (non)magnetic materials. This is of particular interest to calculate the light field within complex, scattering, tissues. |
2024-12-01 15:01:15 |
ZernikePy |
0.0.5 |
A minimalistic Python package to generate individual or a series of Zernike polynomials of arbitrary orders with visualization. |
2024-11-27 10:20:44 |
opticalglass |
1.1.0 |
Tools for reading optical glass catalogs |
2024-11-26 04:35:00 |
pmcx |
0.3.6 |
Python bindings for Monte Carlo eXtreme photon transport simulator |
2024-11-21 07:02:26 |
cavcalc |
1.3.0 |
A program for computing Fabry-Perot optical cavity parameters. |
2024-11-16 19:31:07 |
katsu |
0.1.0 |
Mueller calculus, polarimetry, and motion control |
2024-10-30 17:10:26 |
jax-optix |
0.1.4 |
Zero-overhead functional lensing for JAX PyTrees |
2024-10-28 15:52:24 |
solpoc |
0.9.6 |
Solar Performances Optimization Code (SolPOC) is an Academic research code, used for solar energy. SolPOC can solve and optimize a stack of thin layers for designed solar mirror, antireflective coating, thermal absorber etc. |
2024-10-24 09:21:10 |
pmcxcl |
0.2.1 |
Python bindings for Monte Carlo eXtreme (OpenCL) photon transport simulator |
2024-09-30 04:24:23 |
PyMoosh |
3.91 |
A scattering matrix formalism to solve Maxwell's equations in a multilayered structure. |
2024-09-26 22:47:36 |
rayflare |
2.0.1 |
Python-based integrated optical modelling |
2024-09-26 11:38:01 |
fourieroptics |
0.0.5 |
Library for Fourier Optics Helper Functions |
2024-09-19 00:28:55 |