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      Adjoint methods for quasisymmetry of vacuum fields on a surface

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          Abstract

          Adjoint methods can speed up stellarator optimisation by providing gradient information more efficiently compared to finite-difference evaluations. Adjoint methods are herein applied to vacuum magnetic fields, with objective functions targeting quasisymmetry and a rotational transform value on a surface. To measure quasisymmetry, a novel way of evaluating approximate flux coordinates on a single flux surface without the assumption of a neighbourhood of flux surfaces is proposed. The shape gradients obtained from the adjoint formalism are evaluated numerically and verified against finite-difference evaluations.

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          Author and article information

          Journal
          25 August 2021
          Article
          2108.11433
          83087591-6abe-4c3b-b4a6-6ed020afa95d

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          physics.plasm-ph

          Plasma physics
          Plasma physics

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