Optimization of stellarator configurations combining omnigenity and piecewise omnigenity

Fuente: arXiv
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Main Authors: Liu, Hengqian, Yu, Guodong, Velasco, José Luis, Zhu, Caoxiang
Format: Preprint
Published: 2026
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author Liu, Hengqian
Yu, Guodong
Velasco, José Luis
Zhu, Caoxiang
author_facet Liu, Hengqian
Yu, Guodong
Velasco, José Luis
Zhu, Caoxiang
contents We present a method for optimizing stellarator configurations that combine omnigenity and piecewise omnigenity (pwO). Within the \texttt{OOPS} optimization framework [Liu \textit{et al.}, arXiv:2502.09350 (2025)], we introduce a mapping technique that can ``squeeze'' general omnigenous fields to approximate pwO in the high-field side. Using this approach, we obtain a range of optimized configurations that combine poloidal omnigenity (PO) and pwO, spanning different field periods and aspect ratios. We further show that these configurations are compatible with a magnetic well. The resulting configurations exhibit favorable neoclassical transport and bootstrap current properties while partially relaxing the strict constraints of omnigenity. These results suggest that such configurations are promising candidates for future stellarator reactors.
format Preprint
id arxiv_https___arxiv_org_abs_2603_12139
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Optimization of stellarator configurations combining omnigenity and piecewise omnigenity
Liu, Hengqian
Yu, Guodong
Velasco, José Luis
Zhu, Caoxiang
Plasma Physics
We present a method for optimizing stellarator configurations that combine omnigenity and piecewise omnigenity (pwO). Within the \texttt{OOPS} optimization framework [Liu \textit{et al.}, arXiv:2502.09350 (2025)], we introduce a mapping technique that can ``squeeze'' general omnigenous fields to approximate pwO in the high-field side. Using this approach, we obtain a range of optimized configurations that combine poloidal omnigenity (PO) and pwO, spanning different field periods and aspect ratios. We further show that these configurations are compatible with a magnetic well. The resulting configurations exhibit favorable neoclassical transport and bootstrap current properties while partially relaxing the strict constraints of omnigenity. These results suggest that such configurations are promising candidates for future stellarator reactors.
title Optimization of stellarator configurations combining omnigenity and piecewise omnigenity
topic Plasma Physics
url https://arxiv.org/abs/2603.12139