Electron-cyclotron-resonance heating in Wendelstein 7-X: A versatile heating and current-drive method and a tool for in-depth physics studies
R. C. Wolf(Max Planck Institute for Plasma Physics - Greifswald), M. Stejner(Aarhus University), E.R. Scott(Max Planck Institute for Plasma Physics - Greifswald), A. Langenberg(Max Planck Institute for Plasma Physics - Greifswald), H. Trimiño Mora(Max Planck Institute for Plasma Physics - Greifswald), G. Gantenbein(University of Stuttgart), H. Damm(Max Planck Institute for Plasma Physics - Greifswald), T. S. Pedersen(Capital One (United States)), M. Salewski(Technical University of Denmark), W. Kasparek(University of Stuttgart), I. Abramovic(Max Planck Institute for Plasma Physics - Greifswald), D. Moseev(Institute for Atomic and Molecular Physics), K. J. Brunner(Max Planck Institute for Plasma Physics - Greifswald), F. Leipold(Technical University of Denmark), S. Bozhenkov(Max Planck Society), K. Rahbarnia(Max Planck Institute for Plasma Physics - Greifswald), J. Rasmussen(Technical University of Denmark), N. B. Marushchenko(Max Planck Institute for Plasma Physics - Greifswald), J. Geiger(Max Planck Institute for Plasma Physics - Greifswald), H. Oosterbeek(Max Planck Institute for Plasma Physics - Greifswald), C. D. Beidler(Max Planck Institute for Plasma Physics - Greifswald), M. Hirsch(Max Planck Institute for Plasma Physics - Greifswald), N. Pablant(Princeton Plasma Physics Laboratory), J. Knauer(Max Planck Institute for Plasma Physics - Greifswald), M. Jakubowski(Forschungszentrum Jülich), S. B. Korsholm(Technical University of Denmark), Thomas Jensen(University of Stuttgart), J. Baldzuhn(Max Planck Institute for Plasma Physics - Greifswald), J. Schilling, C. Lechte(University of Stuttgart), G. Fuchert(Max Planck Institute for Plasma Physics - Greifswald), N. Chaudhary(Max Planck Institute for Plasma Physics - Greifswald), A. Puig Sitjes(Max Planck Institute for Plasma Physics - Greifswald), S. Marsen(Max Planck Institute for Plasma Physics - Greifswald), B. Plaum(University of Stuttgart), H. P. Laqua, A. Dinklage(Max Planck Institute for Plasma Physics - Greifswald), A. Alonso, John Jelonnek(Karlsruhe Institute of Technology), U. Höfel(Max Planck Society), P. Drewelow(Max Planck Society), M. Beurskens(Japan Atomic Energy Agency), S. K. Nielsen(Technical University of Denmark), Yu Gao, M. Zanini(Max Planck Institute for Plasma Physics - Greifswald), E. Pasch(Max Planck Institute for Plasma Physics - Greifswald), U. Neuner(Max Planck Institute for Plasma Physics - Greifswald), T. Stange, H. Braune(Max Planck Institute for Plasma Physics - Greifswald), Y. Kazakov
Cited by 64
Related Papers
Active Control of Type-I Edge-Localized Modes with<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>n</mml:mi><mml:mo>=</mml:mo><mml:mn>1</mml:mn></mml:math>Perturbation Fields in the JET Tokamak
|Physical Review Letters|2007|595
A first-principles predictive model of the pedestal height and width: development, testing and ITER optimization with the EPED model
|Nuclear Fusion|2011|452
JET ITER-like wall—overview and experimental programme
|Physica Scripta|2011|346
Overview of first Wendelstein 7-X high-performance operation
|Nuclear Fusion|2019|248
Pedestal stability comparison and ITER pedestal prediction
|Nuclear Fusion|2009|231