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Nonlinear saturation of ballooning modes in stellarators

Abstract:
Ballooning mode saturation is investigated in realistic stellarator configurations using the flux tube approach of Ham et al (2018 Plasma Phys. Control. Fusion 60 075017), Ham et al (2016 Phys. Rev. Lett. 116 235001). The method is adapted to account for the lack of exact force balance in stellarator equilibrium solvers that assume existence of nested flux surfaces. A variational approach for calculating flux tube energy is developed to overcome this force error problem in stellarator numerical equilibria. Saturated (equilibrium) flux tube states that cross 10%–20% of the plasma minor radius are shown to exist for linearly ballooning unstable profiles. It is shown that several features of the displaced flux tube structure in a full nonlinear MHD simulation of Wendelstein 7X are reproduced by our model. Saturated states are found in a compact stellarator equilibrium close but below the marginal ballooning linear instability, i.e. the unperturbed equilibrium is metastable. This suggests that edge-localized-mode-like explosive MHD behavior may be possible in stellarators.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1088/1741-4326/ae7983

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Role:
Author
ORCID:
0000-0002-0382-6428
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Role:
Author
ORCID:
0000-0002-6348-7827
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Role:
Author
ORCID:
0000-0002-3616-2912
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Institution:
University of Oxford
Role:
Author
ORCID:
0000-0001-9621-7404


Publisher:
IOP Publishing
Journal:
Nuclear Fusion More from this journal
Volume:
66
Issue:
8
Pages:
086021-086021
Publication date:
2026-06-08
DOI:
EISSN:
1741-4326
ISSN:
0029-5515


Language:
English
Keywords:
Pubs id:
2448177
Local pid:
pubs:2448177
Source identifiers:
W7163927633
Deposit date:
2026-08-03
ARK identifier:
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