Edge Radial Electric Field Formation after the L-H Transition on JT-60U
Author:
Publisher
Wiley
Subject
Condensed Matter Physics
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/ctpp.201410013/fullpdf
Reference28 articles.
1. Regime of Improved Confinement and High Beta in Neutral-Beam-Heated Divertor Discharges of the ASDEX Tokamak
2. Model ofLtoH-Mode Transition in Tokamak
3. Bifurcation theory of poloidal rotation in tokamaks: A model for L-H transition
4. B. Scott IAEA 2010, IAEA-CN-180 / THC/P4-24.
5. The role of the electric field in confinement
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1. Reduction of ion thermal transport due to non-uniformity effects of the radial electric field at the edge of the JT-60U tokamak;Nuclear Fusion;2017-09-11
2. Experimental validation of non-uniformity effect of the radial electric field on the edge transport barrier formation in JT-60U H-mode plasmas;Scientific Reports;2016-08-02
3. On the Origin of Steep and Localized Radial Electric Field in the Transport Barrier at Plasma Edge;Contributions to Plasma Physics;2016-06-24
4. Shock formation induced by poloidal flow and its effects on the edge stability in tokamaks;Physics of Plasmas;2016-04
5. Integrated modelling of toroidal rotation with the 3D non-local drift-kinetic code and boundary models for JT-60U analyses and predictive simulations;Nuclear Fusion;2015-06-26
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