Theoretical analysis of the saturation phase of the $1/1$ energetic-ion-driven resistive interchange mode

ORAL

Abstract

The aim of the present study is to analyze the saturation of the energetic-ion-driven resistive interchange mode (EIC) in LHD plasma using FAR3d code. The non linear simulation results show similar $1/1$ EIC saturation phases with respect to the experimental observations, reproducing the enhancement of the $n/m = 1/1$ resistive interchange modes (RIC) amplitude and width as the EP $\beta$ increases, the EP $\beta$ threshold for the $1/1$ EIC excitation, the further destabilization of the $1/1$ EIC as the population of the helically trapped EP increases and the triggering of burst events.

*This work was supported by the Comunidad de Madrid under the project 2019-T1/AMB-13648 and NIFS07KLPH004

Authors

  • Jacobo Varela

    • Universidad Carlos III de Madrid
  • Donald Spong

    • ORNL
    • Oak Ridge National Laboratory
    • Oak Ridge National Lab
  • Luis Garcia

    • Universidad Carlos III de Madrid
  • Satoshi Ohdachi

    • National Institute for Fusion Science
  • Kiyomasa Watanabe

    • National Institute for Fusion Science
  • Yashika Ghai

    • Oak Ridge National Laboratory
    • Oak Ridge National Lab
  • Ryosuke Seki

    • National Institute for Fusion Science