DOE OSTI · 3388792
Estimating coil features from an equilibrium
Abstract
We present an explicit theoretical framework for constructing artificial modular coils for vacuum stellarator fields based solely on equilibrium properties, achieved through the formulation of a current potential defined on flux surfaces. Contours of constant Boozer toroidal angle can be directly interpreted as proxy coils, and so we demonstrate that key measures of coil complexity—particularly coil non-planarity—are strongly governed by local magnetic-field properties. This approach shows promise as predictor for more realistic coil configurations, providing both a pathway toward deeper understanding of equilibrium–coil relationships and a potential practical proxy for coil design.
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Rodríguez, Eduardo [Max Planck Institute for Plasma Physics, Greifswald (Germany)] (ORCID:0000000214180466), Sengupta, W. [Princeton University, NJ (United States)] (ORCID:0000000234152067). 2026-07-16. Estimating coil features from an equilibrium. https://doi.org/10.1063/5.0340715
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