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A comprehensive Julia package for stellarator fusion reactor physics analysis featuring 3D magnetic field calculations, neoclassical transport modelling, quasi-isodynamic optimisation algorithms, and interactive 3D visualisations. Includes tokamak comparison framework and high-resolution plotting capabilities for fusion research.
Computational fusion research framework for C6-seeded stellarator optimization: omnigenity, field-line and particle-loss proxies, phase-coherent RF control, coil/structural robustness, matched baselines, Monte Carlo validation, and explicit claim gates. Reproducible, source-available.
Research concept for a pulsed fusion architecture based on Persistent Ignition Zones, pulse-to-pulse memory, cumulative micro-ignition cycles, and high-frequency fuel replenishment.