October 2011

Journal

Continuous Improvement of H-Mode Discharge Performance with Progressively Increasing Lithium Coatings in the National Spherical Torus Experiment

By:
Maingi, Rajesh ; Kaye, S.; Skinner, C.; Boyle, D. P.; Canik, John M; Bell, M.; Bell, R. E.; Gray, Travis K; Jaworski, M. A.; Kaita, R.; Kugel, H.; LaBlanc, B. P.; Mansfield, D.K.; Osborne, T. H.; Sabbagh, S. A.; Soukhanovskii, V. A.
Journal Name:
Physical Review Letters
Page Number:
145004-1-145004-4
Volume:
107
Issue Number:
14
Publication Date:
October 2011
View DOI Listing:
https://doi.org/10.1103/PhysRevLett.107.145004

Abstract

Lithium wall coatings have been shown to reduce recycling, improve energy confinement, and suppress edge localized modes in the National Spherical Torus Experiment. Here, we show that these effects depend continuously on the amount of predischarge lithium evaporation.We observed a nearly monotonic reduction in recycling, decrease in electron transport, and modification of the edge profiles and stability with increasing lithium. These correlations challenge basic expectations, given that even the smallest coatings exceeded that needed for a nominal thickness of the order of the implantation range.


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