Physics of Plasmas · 1999 · 13 citations · 32 references
EngineeringNuclear PhysicsCenter Code CalculationsPlasma PhysicsMagnetic Confinement FusionHeavy Ion PhysicPlasma SimulationPlasma TheoryControlled Nuclear FusionCelestial MechanicIon BeamPlasma ConfinementRipple WellsPhysicsMagnetic ConfinementEnergetic Particle TransportHamiltonian CoordinateNuclear AstrophysicsNatural SciencesStellar StructureNon-axisymmetric Plasma Configurations
Hamiltonian coordinate, guiding center code calculations of the confinement of suprathermal ions in quasi-axisymmetric stellarator (QAS) designs have been carried out to evaluate the attractiveness of compact configurations which are optimized for ballooning stability. A new stellarator particle following code is used to predict the confinement of thermal and neutral beam ions in a small experiment with R=145 cm, B=1–2 T and for alpha particles in a reactor size device. As for tokamaks, collisional pitch angle scattering drives ions into ripple wells and stochastic field regions, where they are quickly lost. In contrast, however, such losses are enhanced in QAS so that high edge poloidal flux has limited value in improving ion confinement. The necessity for reduced stellarator ripple fields is emphasized.
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Plasma Physics and Controlled Nuclear Fusion Research
S. M. Gibson, Tadashi Sekiguchi, K. Lackner et al. · MPG.PuRe (Max Planck Society) · 1987 · 3.4K citations
Plasma equilibrium with rational magnetic surfaces
Allen H. Boozer · The Physics of Fluids · 1981 · 389 citations
Magnetism, Engineering, Physics +14
Confinement of High-Energy Trapped Particles in Tokamaks
R.J. Goldston, R. B. White, Allen H. Boozer · Physical Review Letters · 1981 · 292 citations
Magnetism, Engineering, Physics +14