ASDEX Upgrade—JT-60U comparison and ECRH power requirements for NTM stabilization in ITER
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Nuclear and High Energy Physics
Reference27 articles.
1. The physics of neoclassical tearing modes and their stabilization by ECCD in ASDEX Upgrade
2. Control of neoclassical tearing modes in DIII–D
3. Achievement of high fusion triple product, steady-state sustainment and real-time NTM stabilization in high- pELMy H-mode discharges in JT-60U
4. Physics analysis of the ITER ECW system for optimized performance
5. Beta limits in long-pulse tokamak discharges
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1. On the stabilisation of locked tearing modes in ITER and other large tokamaks;Nuclear Fusion;2022-07-06
2. Effect of the toroidal flow and flow shear on the m/n = 2/1 tearing mode in J-TEXT tokamak;Plasma Physics and Controlled Fusion;2021-05-11
3. Non-linear simulations of neoclassical tearing mode control by externally driven RF current and heating, with application to ITER;Nuclear Fusion;2019-08-21
4. Control of neoclassical tearing modes and integrated multi-actuator plasma control on TCV;Nuclear Fusion;2019-06-11
5. The causes of the disruptive tearing instabilities of the ITER Baseline Scenario in DIII-D;Nuclear Fusion;2018-09-11
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