Meta package for the Ubermag project.
-
Updated
Sep 21, 2026 - Python
Meta package for the Ubermag project.
Workshop: Micromagnetics with Ubermag
Python package for the analysis and visualisation of finite-difference fields.
Installation, scripting, & data generation demo of GPU-accelerated computational micro and nanomagnetism in MuMax3. Formed & written by Onri Jay Benally, an Indigenous American quantum hardware engineer.
Python package for manipulating tabular data.
Python package for the analysis of micromagnetic data.
Spin-Hall nano-oscillator simulation using mumax3.
Native Apple Silicon Metal port of mumax3, extending CUDA based micromagnetic simulation to macOS with MPSGraph FFT and validated physics compatibility.
Official implementation of "Current-controlled nanomagnetic writing for reconfigurable magnonic crystals"
⚡ The fastest micromagnetic simulator on a Mac — 3.3×–30× faster and 5.9×–26× more energy-efficient than every other simulator that runs on Apple Silicon. Native Metal port of mumax³: unmodified .mx3, validated physics, 84M cells on a fanless MacBook Air.
Ubermag webpages
Testing package for computational magnetism tools.
mumax3 replica of picosecond spin-orbit-torque switching (Jhuria et al., Nat. Electron. 2020): time-exact LLG + Joule heating, phase diagrams, figure-ready plots
Detection of geometric asymmetry in ferromagnetic quantum dots modeled as magnetic potential field wells in thin-film YIG
Ubermag: Towards more effective micromagnetic workflows
🧲 Describe the simulation, get the answer — not a folder of .ovf files. A Claude Code plugin that writes, runs, tunes and mesh-checks mumax3 on your Mac, and reproduces a paper figure straight from its PDF. Ten skills you use by just talking; every script compiles before you see it.
To associate your repository with the mumax3 topic, visit your repo's landing page and select "manage topics."