Abstract
The generation of runaway electrons in the international fusion experiment ITER disruptions can lead to severe damage at plasma facing components. Massive gas injection might inhibit the generation process, but the amount of gas needed can affect, e.g., vacuum systems. Alternatively, magnetic perturbations can suppress runaway generation by increasing the loss rate. In TEXTOR disruptions runaway losses were enhanced by the application of resonant magnetic perturbations with toroidal mode number n=1 and n=2. The disruptions are initiated by fast injection of about 3×1021 argon atoms, which leads to a reliable generation of runaway electrons. At sufficiently high perturbation levels a reduction of the runaway current, a shortening of the current plateau, and the suppression of high energetic runaways are observed. These findings indicate the suppression of the runaway avalanche during disruptions. © 2008 The American Physical Society.
Cite
CITATION STYLE
Lehnen, M., Bozhenkov, S. A., Abdullaev, S. S., & Jakubowski, M. W. (2008). Suppression of runaway electrons by resonant magnetic perturbations in TEXTOR disruptions. Physical Review Letters, 100(25). https://doi.org/10.1103/PhysRevLett.100.255003
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.