Effects of reversed magnetic shear on the plasma rotation stabilization of resistive wall modes in tokamaks

Fuente: arXiv
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Main Authors: Wan, Sui, Zhu, Ping, Zheng, Linjin
Format: Preprint
Published: 2025
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author Wan, Sui
Zhu, Ping
Zheng, Linjin
author_facet Wan, Sui
Zhu, Ping
Zheng, Linjin
contents Effects of reversed magnetic shear on the plasma rotation stabilization of resistive wall modes in tokamaks are investigated using the AEGIS code. MHD equilibria in toroidal configuration from circular cross-sections to realistic CFETR-like scenarios with various magnetic shear profiles are considered. Two critical aspects of the $n=1$ RWM are examined: the influence of toroidal rotation on the unstable regime and the toroidal rotation frequency thresholds required for complete stabilization. It is found that strongly reversed magnetic shear consistently broadens the unstable $β_{\rm N}$ window in both circular and CFETR equilibria when toroidal rotation is included. Furthermore, reversed magnetic shear significantly reduces the rotational stabilization, resulting in narrower stability windows and notably higher toroidal rotation frequency thresholds required for complete RWM suppression compared to the cases with positive shear only. These results clearly demonstrate that the reversed magnetic shear in the advanced tokamak configuration imposes more stringent requirement for the effective toroidal rotation stabilization of the $n=1$ RWM.
format Preprint
id arxiv_https___arxiv_org_abs_2509_01502
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effects of reversed magnetic shear on the plasma rotation stabilization of resistive wall modes in tokamaks
Wan, Sui
Zhu, Ping
Zheng, Linjin
Plasma Physics
Effects of reversed magnetic shear on the plasma rotation stabilization of resistive wall modes in tokamaks are investigated using the AEGIS code. MHD equilibria in toroidal configuration from circular cross-sections to realistic CFETR-like scenarios with various magnetic shear profiles are considered. Two critical aspects of the $n=1$ RWM are examined: the influence of toroidal rotation on the unstable regime and the toroidal rotation frequency thresholds required for complete stabilization. It is found that strongly reversed magnetic shear consistently broadens the unstable $β_{\rm N}$ window in both circular and CFETR equilibria when toroidal rotation is included. Furthermore, reversed magnetic shear significantly reduces the rotational stabilization, resulting in narrower stability windows and notably higher toroidal rotation frequency thresholds required for complete RWM suppression compared to the cases with positive shear only. These results clearly demonstrate that the reversed magnetic shear in the advanced tokamak configuration imposes more stringent requirement for the effective toroidal rotation stabilization of the $n=1$ RWM.
title Effects of reversed magnetic shear on the plasma rotation stabilization of resistive wall modes in tokamaks
topic Plasma Physics
url https://arxiv.org/abs/2509.01502