Publication | Open Access
One-Dimensional Vlasov-Maxwell Equilibrium for the Force-Free Harris Sheet
71
Citations
15
References
2009
Year
MagnetismHarris SheetMagnetic PressureEngineeringPhysicsGeometric Partial Differential EquationFluid MechanicsHyperbolic Conservation LawNumerical SimulationPlasma InstabilityMagnetohydrodynamicsPlasma PhysicsMagnetic ConfinementForce-free Harris SheetNonlinear Hyperbolic ProblemMagnetic FieldEquilibrium Magnetic Field
In this Letter, the first nonlinear force-free Vlasov-Maxwell equilibrium is presented. One component of the equilibrium magnetic field has the same spatial structure as the Harris sheet, but whereas the Harris sheet is kept in force balance by pressure gradients, in the force-free solution presented here force balance is maintained by magnetic shear. Magnetic pressure, plasma pressure and plasma density are constant. The method used to find the equilibrium is based on the analogy of the one-dimensional Vlasov-Maxwell equilibrium problem to the motion of a pseudoparticle in a two-dimensional conservative potential. The force-free solution can be generalized to a complete family of equilibria that describe the transition between the purely pressure-balanced Harris sheet to the force-free Harris sheet.
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