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Tearing mode formation induced by internal crash events at different<i>β</i><sub>N</sub>
V. Igochine, I. G. J. Classen, M. Dunne, A. Gude, S. Günter, K. Lackner, R. M. McDermott, M. Sertoli 等 13 位
Max Planck Institute for Plasma Physics Dutch Institute for Fundamental Energy Research
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Tearing mode formation induced by internal crash events at different βN, Igochine, V., Classen, I., Dunne, M., Gude, A., Günter, S., Lackner, K., McDermott, R.M., Sertoli, M., Vezinet, D., Willensdorfer, M., Yu, Q., Zohm, H., ASDEX Upgrade Team
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物理Magnetic confinement fusion research
Ionosphere and magnetosphere dynamics · Superconducting Materials and Applications
参考文献 33
Active Control of Magneto-hydrodynamic Instabilities in Hot Plasmas
被引 64V. Igochine · Springer series on atomic, optical, and plasma physics · 2014
Magnetohydrodynamic Stability of Tokamaks
被引 31H. Zohm · 2014
Hotlink based Soft X-ray Diagnostic on ASDEX Upgrade
被引 16V. Igochine, A. Gude, M. Maraschek · Max Planck Institute for Plasma Physics · 2010
此处列出前 3 条
引用本文 33
Seeding of neoclassical tearing modes by internal crash events in the ASDEX Upgrade and DIII-D tokamaks
被引 22V. Igochine, A. Gude, S. Günter · Nuclear Fusion · 2019
MHD, disruptions and control physics: Chapter 4 of the special issue: on the path to tokamak burning plasma operation
被引 20I. Bandyopadhyay, V. Igochine, O. Sauter · Nuclear Fusion · 2025
Observation of magnetic islands in tokamak plasmas during the suppression of edge-localized modes
被引 18M. Willensdorfer, Matthias Willensdorfer, V. Mitterauer · Nature Physics · 2024
按被引量排序,此处列出前 3 条