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Technical Paper

Stability Study of Kelvin-Helmholtz Modes due to Radial Electric Field Shear

Pages 307-309 | Published online: 10 Aug 2017

REFERENCES

  • H. HOJO, Y. KISHIMOTO and J. W. VAN DAM, “Stability Criterion for Kelvin-Helmholtz Mode in a Cylindrical Plasma,” J. Phys. Soc. Jpn. 64, 4073, (1995).
  • H. HOJO, M. SHIGETA and T. WATANABE, “Flute Mode Instability Driven by an ExB Drift Shear of a Nonuniform Radial Electric Field,” J. Phys. Soc. Jpn. 57, 711 (1988).
  • M. B. CHAUDHRY, H. HOJO, T. WATANABE and K. NISHIKAWA, “Effects of an Ambipolar Field on Stability of Electrostatic Drift Waves in Sheet Plasmas,” J. Phys. Soc. Jpn. 57, 3043 (1988).
  • H. HOJO, S. TANAKA, S. SAOSAKI, M. ICHIMURA, “Flute Stability Analysis of a Quadrupole-Anchored Tandem Mirror Plasma,” Transactions of Fusion Technology 39, 343 (2001).
  • K. IDA et al., “Egde Poloidal Rotation Profiles of H-mode Plasmas in the JFT-2M Tokamak,” Phys. Fluids B4, 2552 (1992).
  • Y. YASAKA, R. ITATANI, “RF Stabilization of High-Density Plasma in an Axisymmetric Mirror I: Identification and Stabilization of Flute mode,” Nuclear Fusion 24, 445 (1984).

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