arXiv · 1412.4004
Fast particle-driven ion cyclotron emission (ICE) in tokamak plasmas and the case for an ICE diagnostic in ITER
Abstract
Fast particle-driven waves in the ion cyclotron frequency range (ion cyclotron emission or ICE) have provided a valuable diagnostic of confined and escaping fast ions in many tokamaks. This is a passive, non-invasive diagnostic that would be compatible with the high radiation environment of deuterium-tritium plasmas in ITER, and could provide important information on fusion {\alpha}-particles and beam ions in that device. In JET, ICE from confined fusion products scaled linearly with fusion reaction rate over six orders of magnitude and provided evidence that {\alpha}-particle confinement was close to classical. In TFTR, ICE was observed from super-Alfv\'enic {\alpha}-particles in the plasma edge. The intensity of beam-driven ICE in DIII-D is more strongly correlated with drops in neutron rate during fishbone excitation than signals from more direct beam ion loss diagnostics. In ASDEX Upgrade ICE is produced by both super-Alfv\'enic DD fusion products and sub-Alfv\'enic deuterium beam ions.
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K. G. McClements, R. D'Inca, R. O. Dendy, L. Carbajal, S. C. Chapman, J. W. S. Cook, R. W. Harvey, W. W. Heidbrink, S. D. Pinches. 2014-12-12. Fast particle-driven ion cyclotron emission (ICE) in tokamak plasmas and the case for an ICE diagnostic in ITER. https://doi.org/10.1088/0029-5515/55/4/043013
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