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Fast Ion Transport in the Three-Dimensional Reversed-Field Pinch

Academic Article
Publication Date:
2019
abstract:
We report on the first comprehensive experimental and numerical study of fast ion transport in the helical reversed-field pinch (RFP). Classical orbit effects dominate the macroscopic confinement properties. The strongest effect arises from growth in the dominant fast ion guiding-center island, but substantial influence from remnant subdominant tearing modes also plays a critical role. At the formation of the helical RFP, neutron flux measurements indicate a drastic loss of fast ions at sufficient subdominant mode amplitudes. Simulations corroborate these measurements and suggest that subdominant tearing modes strongly limit fast ion behavior. Previous work details a sharp thermal transport barrier and suggests the helical RFP as an Ohmically heated fusion reactor candidate; the enhanced transport of fast ions reported here identifies a key challenge for this scheme, but a workable scenario is conceivable with low subdominant tearing mode amplitudes.
Iris type:
01.01 Articolo in rivista
Keywords:
Capillary flow; Pinch effect; Confinement properties; Enchanched transports; Fast ion transport
List of contributors:
Gobbin, Marco
Authors of the University:
GOBBIN MARCO
Handle:
https://iris.cnr.it/handle/20.500.14243/394519
Published in:
PHYSICAL REVIEW LETTERS (PRINT)
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-85070263733&origin=inward
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