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A Quasi-Coherent Electrostatic Mode in ECRH Plasmas on TJ-II

Plasma and Fusion Research · 2011 · Vol. 6 · pp. 2402030–2402030
A. V. MelnikovL.G. EliseevM. A. OchandoK. NagaokaE. AscasíbarÁ. CappaF. CastejónT. EstradaC. HidalgoS. E. LysenkoJ.L. de PablosMaría A. PEDROSAS. YamamotoS. OhshimaHIBP groupTj-Ii Team

Abstract

A new type of instability mode, related to suprathermal electrons, was found in extremely low-density plasmas, (ne = (0.2-0.5) × 1019 m−3) with electron cyclotron resonance heating and current drive (ECRH/ECCD) in the TJ-II heliac. The quasi-monochromatic density and plasma potential oscillations in the frequency range 20-120 kHz tend to have several “branches” with constant frequency shift between them. The typical amplitude of the mode induced potential oscillations was estimated to be ΔφEM ∼ 20 V. The mode branches have an individual and finite radial extent, odd low poloidal structure (m ≤ 5) and angular phase velocity of poloidal rotation of about 8 × 104 rad/s in the ion diamagnetic drift direction. The contribution of the mode to the turbulent particle flux ΓE×B for the observed wave vectors kθ < 3 cm−1 was found to be small in comparison with the contribution from broadband turbulence.

Magnetic confinement fusion researchIonosphere and magnetosphere dynamicsSolar and Space Plasma DynamicsPhysicsAtomic physicsPlasmaDiamagnetismElectronLangmuir probeAmplitudeCyclotronInstabilityTurbulence

Funding

  • Russian Foundation for Basic Research
Citations
25
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A Quasi-Coherent Electrostatic Mode in ECRH Plasmas on TJ-II · Scinovex