\begin{document}$ q_{95} $\end{document} varies. The number of peaks, y, is positively correlated with the toroidal number n, i.e. \begin{document}$y \approx n\Delta {q_{95}}$\end{document} with \begin{document}$\Delta {q_{95}} = 3.5$\end{document}. The peak window in \begin{document}$ q_{95} $\end{document} occurs when a new resonant surface passes through a specific region of the plasma edge. Two-dimensional parameter scans, for the edge safety factor and the coil phasing between the upper and lower rows of coils, yield a linear relationship between the optimal/worst current phase difference and \begin{document}$ q_{95} $\end{document}, which can be well fitted by a simple analytic model. The optimal value of coil current amplitude is sensitive to n. Compared with the same current amplitude assumed for the two/three rows of coils, the optimal current amplitude can increase the \begin{document}${\xi _{\text{X}}}$\end{document} but does not change the prediction of the relative toroidal phase difference. More advanced response model, including kinetic resonances between the RMP perturbation and drift motions of thermal particles and fusion-born alphas, shows that the modification of kinetic effects should be considered in order to better describe the plasma response to RMP fields in high-β plasmas. The fluid response model with a strong parallel sound wave damping (\begin{document}${\kappa _\parallel } = 1.5$\end{document}) can well predict the plasma response for the ‘DEMO-like’ equilibria. For low β plasma, the kinetic response is consistent with the fluid response, whether a strong parallel sound wave damping exists or not."> - 必威体育下载

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    Zhou Li-Na, Hu Han-Qing, Liu Yue-Qiang, Duan Ping, Chen Long, Zhang Han-Yu
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    • Abstract views:3073
    • PDF Downloads:61
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    Publishing process
    • Received Date:18 November 2022
    • Accepted Date:24 January 2023
    • Available Online:11 February 2023
    • Published Online:05 April 2023

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