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Particle Orbit Analysis in the Finite Beta Plasma of the Large Helical Device using Real Coordinates

Plasma and Fusion Research · 2008 · Vol. 3 · pp. 016–016
Ryousuke SEKIYutaka MatsumotoY. SuzukiK. Y. WatanabeMasafumi Itagaki

Abstract

High-energy particles in a finite beta plasma of the Large Helical Device (LHD) are numerically traced in a real coordinate system. We investigate particle orbits by changing the beta value and/or the magnetic field strength. No significant difference is found in the particle orbit classifications between the vacuum magnetic field and the finite beta plasma cases. The deviation of a banana orbit from the flux surfaces strongly depends on the beta value, although the deviation of the orbit of a passing particle is independent of the beta value. In addition, the deviation of the orbit of the passing particle, rather than that of the banana-orbit particles, depends on the magnetic field strength. We also examine the effect of re-entering particles, which repeatedly pass in and out of the last closed flux surface, in the finite beta plasma of the LHD. It is found that the number of re-entering particles in the finite beta plasma is larger than that in the vacuum magnetic field. As a result, the role of reentering particles in the finite beta plasma of the LHD is more important than that in the vacuum magnetic field, and the effect of the charge-exchange reaction on particle confinement in the finite beta plasma is large.

Magnetic confinement fusion researchSolar and Space Plasma DynamicsIonosphere and magnetosphere dynamicsBETA (programming language)PhysicsOrbit (dynamics)PlasmaMagnetic fieldParticle (ecology)Flux (metallurgy)Circular orbitLarge Helical DeviceCylindrical coordinate system

Funding

  • National Institute for Fusion Science
  • Hokkaido University
  • Japan Society for the Promotion of Science
Citations
20
FWCI
1.55
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14
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