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Academic paper

Direct Optimization of Stellarator Omnigenity from the Second Adiabatic Invariant

Authors: Hanlin Chen (1 and 2), Zhiyuan Lu (1), Guosheng Xu (1), Shuai Cao (1 and 2), Yang Han (1 and 2), Dehong Chen (1), Baonian Wan (1) ((1) Institute of Plasma Physics, Chinese Academy of Sciences, Hefei, China, (2) University of Science and Technology of China, Hefei, China)Published: 2026-08-03Paper ID: 2608.02418Category: physics.plasm-phLicense: CC BY 4.0

Abstract

Stellarators offer a steady-state, disruption-free path to fusion energy but suffer from enhanced particle losses due to their three-dimensional geometry. Existing optimization methods rely on geometric proxies rather than the actual trapped-particle orbit condition. We present a differentiable framework that directly optimizes the fundamental orbit action governing particle confinement. The approach yields compact stellarator designs with excellent fast-ion confinement, finite-pressure stability, and coil compatibility, demonstrating that first-principles orbit optimization can be integrated with engineering constraints in a single computational workflow for fusion reactor design.

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