Pedestal Stability Changes and Boundary Plasma Response During ELM Suppression by RMP in DIII-D

POSTER

Abstract

ELM suppression by application of n=3 edge resonant magnetic perturbations (RMP) has been obtained for both high and low collisionality plasmas in \hbox{DIII-D} using internal coils. The effect of the RMP on pedestal stability and on the divertor plasma appears to be different in the two cases. In the high collisionality case small islands are created in the edge, pedestal plasma profiles and the divertor radiation structure do not change much, but the plasma rotation is substantially reduced. At low collisionality the edge is predicted to be stochastic, $n_e$ and $T_e$ pedestals and the divertor radiation profiles are modified significantly, and the plasma rotation initially increases. The pedestal parameters in this case show several similarities with QH-mode but no EHO is observed. The implications of these differences on the pedestal stability and the divertor plasma will be presented.

*Work supported by US DOE under W-7405-ENG-48, DE-FC02-04ER54698, DE-FG02-04ER54758, and DE-FG03-01ER54615

Authors

  • M.E. Fenstermacher

    • Lawrence Livermore National Laboratory
    • LLNL
  • T.E. Evans

    • General Atomics
  • T.H. Osborne

    • General Atomics
  • P.B. Snyder

    • General Atomics
  • K.H. Burrell

    • General Atomics
    • GA
  • R.J. Groebner

    • GA
    • General Atomics
  • A.W. Leonard

    • GA
  • J.A. Boedo

  • R.A. Moyer

    • University of California-San Diego
    • UCSD
  • M. Groth

  • C.J. Lasnier

    • Lawrence Livermore National Laboratory
    • LLNL
  • L. Zeng

    • UCLA