Demonstration of reduced neoclassical energy transport in Wendelstein 7-X
C. D. Beidler(Max Planck Institute for Plasma Physics - Greifswald), J.-P. Bähner(Max Planck Institute for Plasma Physics - Greifswald), R. Kleiber(Max Planck Institute for Plasma Physics - Greifswald), K. Aleynikova(Max Planck Institute for Plasma Physics - Greifswald), E.R. Scott(Max Planck Institute for Plasma Physics - Greifswald), A. Langenberg(Max Planck Institute for Plasma Physics - Greifswald), H. Damm(Max Planck Institute for Plasma Physics - Greifswald), P. Aleynikov(ITER), U. Hergenhahn(Fritz Haber Institute of the Max Planck Society), T. Andreeva(Max Planck Institute for Plasma Physics - Greifswald), F. Warmer(Max Planck Institute for Plasma Physics - Greifswald), T. S. Pedersen(Capital One (United States)), I. Abramovic(Max Planck Institute for Plasma Physics - Greifswald), K. J. Brunner(Max Planck Institute for Plasma Physics - Greifswald), Y. Turkin(Max Planck Institute for Plasma Physics - Greifswald), S. Bozhenkov(Max Planck Society), K. Rahbarnia(Max Planck Institute for Plasma Physics - Greifswald), P. Helander(Max Planck Institute for Plasma Physics), J. Geiger(Max Planck Institute for Plasma Physics - Greifswald), E. Ascasíbar(Universidad Complutense de Madrid), Adnan Ali(Government College University, Faisalabad), M. Krychowiak(Max Planck Institute for Plasma Physics - Greifswald), S. Kwak(Max Planck Institute for Plasma Physics - Greifswald), H. P. Laqua(Max Planck Institute for Plasma Physics - Greifswald), M. Hirsch(Max Planck Institute for Plasma Physics - Greifswald), J. Svensson(Max Planck Institute for Plasma Physics - Greifswald), G. Anda(HUN-REN Wigner Research Centre for Physics), N. Pablant(Princeton Plasma Physics Laboratory), M. Drevlak(Max Planck Institute for Plasma Physics - Greifswald), U. Neuner(Max Planck Institute for Plasma Physics - Greifswald), J. A. Alcusón(Max Planck Institute for Plasma Physics - Greifswald), A. Pavone(Max Planck Institute for Plasma Physics - Greifswald), O. Ford(Max Planck Institute for Plasma Physics - Greifswald), J. Baldzuhn(Max Planck Institute for Plasma Physics - Greifswald), J. Schilling, R. C. Wolf(Max Planck Institute for Plasma Physics - Greifswald), G. Fuchert(Max Planck Institute for Plasma Physics - Greifswald), M. Borchardt(Max Planck Institute for Plasma Physics - Greifswald), A. Alonso, S. Äkäslompolo(Aalto University), H. Thomsen(Max Planck Institute for Plasma Physics - Greifswald), U. Höfel(Max Planck Society), M. Beurskens(Japan Atomic Energy Agency), E. Pasch(Max Planck Institute for Plasma Physics - Greifswald), H. M. Smith(Max Planck Institute for Plasma Physics - Greifswald), D. Zhang(Max Planck Institute for Plasma Physics - Greifswald), Ye. O. Kazakov(Laboratoire de Physique des Plasmas), T. Stange
Cited by 172
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