An adjoint-based method for optimising MHD equilibria against the infinite-n, ideal ballooning mode

dc.contributor.authorGaur, Rahul
dc.contributor.authorBuller, S.
dc.contributor.authorRuth, Maximilian
dc.contributor.authorLandreman, Matt
dc.contributor.authorAbel, Ian
dc.contributor.authorDorland, W.
dc.date.accessioned2026-07-01T20:17:54Z
dc.date.issued2023
dc.description.abstractWe demonstrate a fast adjoint-based method to optimise tokamak and stellarator equilibria against a pressure-driven instability known as the infinite- $n$ ideal ballooning mode. We present three finite- $beta$ (the ratio of thermal to magnetic pressure) equilibria: one tokamak equilibrium and two stellarator equilibria that are unstable against the ballooning mode. Using the self-adjoint property of ideal magnetohydrodynamics, we construct a technique to rapidly calculate the change in the eigenvalue, a measure of ideal ballooning instability. Using the SIMSOPT optimisation framework, we then implement our fast adjoint gradient-based optimiser to minimise the eigenvalue and find stable equilibria for each of the three originally unstable equilibria.
dc.description.urihttps://doi.org/10.1017/s0022377823000995
dc.identifierhttps://doi.org/10.13016/juu3-iel7
dc.identifier.citationGaur, R., Buller, S., Ruth, M. E., Landreman, M., Abel, I. G., & Dorland, W. D. (2023). An adjoint-based method for optimising MHD equilibria against the infinite-n, ideal ballooning mode.�Journal of Plasma Physics,�89(5), 905890518. doi:10.1017/S0022377823000995
dc.identifier.urihttp://hdl.handle.net/1903/35720
dc.language.isoen
dc.publisherJournal of Plasma Physics
dc.rightsAttribution 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subjectfusion plasma
dc.subjectplasma instabilities
dc.subjectplasma confinement
dc.titleAn adjoint-based method for optimising MHD equilibria against the infinite-n, ideal ballooning mode
dc.typearticle
local.equitableAccessSubmissionYes

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