English

Turbulence suppression by energetic particle effects in modern optimized stellarators

Plasma Physics 2020-09-09 v1

Abstract

Turbulent transport is known to limit the plasma confinement of present-day optimized stellarators. To address this issue, a novel method to strongly suppress turbulence in such devices is proposed, namely the resonant wave-particle interaction of supra-thermal particles - e.g., from ion-cyclotron-resonance-frequency (ICRF) heating - with turbulence-driving microinstabilities like ion-temperature-gradient (ITG) modes. The effectiveness of this mechanism is demonstrated via analytic theory and large-scale gyrokinetic simulations, revealing an overall turbulence reduction by up to 80%80\%. These results hold the promise of new and still unexplored stellarator scenarios with enhanced confinement and improved performance, essential for achieving burning plasmas in future devices.

Keywords

Cite

@article{arxiv.2003.00288,
  title  = {Turbulence suppression by energetic particle effects in modern optimized stellarators},
  author = {Alessandro Di Siena and Alejandro Banon Navarro and Frank Jenko},
  journal= {arXiv preprint arXiv:2003.00288},
  year   = {2020}
}
R2 v1 2026-06-23T13:58:49.173Z