4.5 Article

Generation and suppression of runaway electrons in MST tokamak plasmas

期刊

NUCLEAR FUSION
卷 60, 期 4, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1741-4326/ab73c0

关键词

runaway electrons; resonant magnetic perturbations; tokamak; MHD

资金

  1. U.S. Department of Energy Office of Science, Office of Fusion Energy Sciences program [DE-FC02-05ER54814, DE-FC02-08ER54975, DE-SC0018001, DE-SC0020245]
  2. U.S. Department of Energy Computational Sciences Graduate Fellowship program
  3. UW-Madison
  4. Advanced Computing Initiative
  5. Wisconsin Alumni Research Foundation
  6. Wisconsin Institutes for Discovery
  7. National Science Foundation
  8. U.S. Department of Energy's Office of Science
  9. U.S. Department of Energy (DOE) [DE-SC0020245] Funding Source: U.S. Department of Energy (DOE)

向作者/读者索取更多资源

This paper explores the behavior of runaway electrons in tokamak plasmas at low electron density, plasma current, and magnetic field using experimental data from the Madison Symmetric Torus (MST) and computational data from the NIMROD nonlinear resistive 3D MHD code. Density thresholds for the onset and suppression of runaway electrons are determined experimentally in steady tokamak plasmas, and in plasmas with a population of runaway electrons, resonant magnetic perturbations with different poloidal mode numbers are applied. Poloidal mode number m = 3 perturbations suppress the runaway electrons, while perturbations with m = 1 have little effect. This difference is consistent with the difference in computed magnetic topologies. The m = 1 RMP has little effect on the topology, while the m = 3 RMP produces a broad region of stochasticity, which can allow for rapid loss of the runaway electrons.

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