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Turbulent transport stabilization by ICRH minority fast ions in low rotating JET ILW L-mode plasmas

  • N. Bonanomi
  • , P. Mantica
  • , A. Di Siena
  • , E. Delabie
  • , C. Giroud
  • , T. Johnson
  • , E. Lerche
  • , S. Menmuir
  • , M. Tsalas
  • , D. Van Eester
  • University of Milano-Bicocca
  • CNR
  • Max-Planck-Institut für Plasmaphysik
  • Oak Ridge National Laboratory
  • Culham Centre for Fusion Energy
  • KTH Royal Institute of Technology
  • FOM Institute DIFFER

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

40 Citations (Scopus)

Résumé

The first experimental demonstration that fast ion induced stabilization of thermal turbulent transport takes place also at low values of plasma toroidal rotation has been obtained in JET ILW (ITER-like wall) L-mode plasmas with high (3He)-D ICRH (ion cyclotron resonance heating) power. A reduction of the gyro-Bohm normalized ion heat flux and higher values of the normalized ion temperature gradient have been observed at high ICRH power and low NBI (neutral beam injection) power and plasma rotation. Gyrokinetic simulations indicate that ITG (ion temperature gradient) turbulence stabilization induced by the presence of high-energetic 3He ions is the key mechanism in order to explain the experimental observations. Two main mechanisms have been identified to be responsible for the turbulence stabilization: a linear electrostatic wave-fast particle resonance mechanism and a nonlinear electromagnetic mechanism. The dependence of the stabilization on the 3He distribution function has also been studied.

langue originaleAnglais
Numéro d'article056025
journalNuclear Fusion
Volume58
Numéro de publication5
Les DOIs
étatPublié - 4 avr. 2018

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