Published June 2000 | Version v1
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Gyro-kinetic simulation of self-generated radial electric field induced by kinetic m=1 internal kink mode

  • 1. Japan Atomic Energy Research Inst., Naka, Ibaraki (Japan). Naka Fusion Research Establishment
  • 2. Department of Electrical and Electronic Engineering, Yamaguchi Univ., Ube, Yamaguchi (Japan)

Description

Effects of density gradient on the kinetic m=1 (m/n=1/1) internal kink mode in a cylindrical tokamak plasma are studied by the gyro-kinetic particle simulations. When the density gradient is not large enough to change the full reconnection process, the phenomena after the full reconnection, such as the secondary reconnection and the evolution of the safety factor profile, are changed considerably due to the self-generated radial electric field, i.e. the m/n=0/0 mode. The growing mechanism is explained by the difference of ExB drift motion between ions and electrons, which is caused by the fast parallel motion of electron. Once the radial electric field is triggered by the symmetrical flow induced by the 1/1 mode, the 0/0 mode grows up to the same level as the 1/1 mode, and drives an ExB plasma rotation in the ion diamagnetic direction, which breaks the symmetrical plasma flow induced by the 1/1 mode. The density and current distributions, and therefore minimum safety factor qmin after the full reconnection, are found to be affected by the asymmetrical flow driven by the 1/1 and 0/0 modes. (author)

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Part of:
Proceeding of 1999-workshop on MHD computations 'study on numerical methods related to plasma confinement'

Additional details

Publishing Information

Imprint Title
Proceeding of 1999-workshop on MHD computations 'study on numerical methods related to plasma confinement'
Imprint Pagination
187 p.
Journal Page Range
p. 90-97
Report number
NIFS-PROC--46

Conference

Title
1999-workshop on MHD computations 'study on numerical methods related to plasma confinement'
Dates
8-10 Nov 1999
Place
Toki, Gifu (Japan)

Optional Information

Notes
13 refs., 10 figs.