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    • ESSOS

      Public
      e-Stellarator Simulation and Optimization Suite
      Python
      31331Updated Aug 14, 2025Aug 14, 2025
    • Python
      0000Updated Aug 5, 2025Aug 5, 2025
    • SPECTRAX

      Public
      Solves Vlasov-Maxwell equations by doing a Hermite-Fourier decomposition.
      Python
      1100Updated Jul 30, 2025Jul 30, 2025
    • PyPIC3D

      Public
      PyPIC3D is a 3D particle-in-cell code written in Python using Jax.
      Python
      1100Updated Jul 25, 2025Jul 25, 2025
    • 1D3V Particle in Cell Code in JAX
      Python
      4702Updated Jul 21, 2025Jul 21, 2025
    • Python
      0100Updated Jul 16, 2025Jul 16, 2025
    • Cyclone

      Public
      Code for creating and optimizing stellarator coils via Simsopt in a simple and powerful way.
      Python
      0100Updated Jul 16, 2025Jul 16, 2025
    • NEOPAX

      Public
      NEOPAX: Neoclassical Transport Package in JAX
      Python
      0000Updated Jul 7, 2025Jul 7, 2025
    • Jupyter Notebook
      0000Updated Jun 30, 2025Jun 30, 2025
    • CycleGAN

      Public
      Jupyter Notebook
      0100Updated Jun 25, 2025Jun 25, 2025
    • Python
      0000Updated Jun 24, 2025Jun 24, 2025
    • Python
      1000Updated Jun 18, 2025Jun 18, 2025
    • pyNACX

      Public
      Python implementation of the Quasisymmetric Stellarator Construction method using automatic differentiation libraries
      Python
      1100Updated May 27, 2025May 27, 2025
    • Jupyter Notebook
      0000Updated May 14, 2025May 14, 2025
    • .github

      Public
      0000Updated May 13, 2025May 13, 2025
    • MHW_PINN

      Public
      This Physics-Informed Neural Network (PINN) aims to solve the 2D Modified Hasegawa-Wakatani (MHW) system of equations to understand how PINNS and AI can be used to aid in the prediction of plasma turbulence, speed up numerical simulations, and/or be incorporated into stellarator optimization studies.
      Jupyter Notebook
      0000Updated May 8, 2025May 8, 2025
    • This repository provides a numerical solver for the one-dimensional Vlasov-Poisson equation using JAX for high-performance computing. The solver leverages GPU acceleration and JAX's automatic differentiation
      Python
      0100Updated May 5, 2025May 5, 2025
    • This project uses ML and Computer Vision to classify stellarator fusion devices.
      Python
      0000Updated Mar 16, 2025Mar 16, 2025
    • Jupyter Notebook
      1200Updated Sep 10, 2024Sep 10, 2024
    • Contains a dev-container directory with VMEC2000, streamlining its complex installation for easier project setup.
      Dockerfile
      0100Updated Aug 10, 2024Aug 10, 2024
    • QuasiXDN

      Public
      Inverse Quasi-Symmetric Stellarator Construction with MiXture Density Networks
      Python
      0000Updated Jun 24, 2024Jun 24, 2024