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Self-adjoint formulation of plasma heating in the ion-cyclotron range of frequencies
12
Citations
7
References
1989
Year
Truncated SystemEngineeringPlasma SciencePlasma HeatingPlasma PhysicsIon-cyclotron RangePlasma SimulationPlasma TheoryPlasma ConfinementThermodynamicsNonthermal PlasmaSelf-adjoint FormulationPhysicsApplied Plasma PhysicAtomic PhysicsPlasma InstabilityApplied PhysicsIon Cyclotron RangeWave OperatorPlasma Application
It is shown that second-order (ρ/L) corrections in the expression for the equilibrium distribution function are required to obtain a self-adjoint system of equations for ion cyclotron range of frequencies (ICRF) wave propagation in a nonuniform plasma (ρ denotes the ion-Larmor radius and L the gradient scale length). Self-adjointness results in energy conservation in the absence of absorption mechanisms, as expected. A Lagrangian density is obtained, which yields both the wave operator and its adjoint, and directly results in the conservation law of the truncated system.
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