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Monte Carlo simulation of electrons within the cathode fall of a glow discharge in helium
106
Citations
14
References
1977
Year
Electrical EngineeringEngineeringPhysicsGlow DischargePlasma SimulationApplied PhysicsAtomic PhysicsMagnetohydrodynamicsCathode Fall RegionElectric FieldMonte Carlo SimulationCathode FallGas Discharge PlasmaIon EmissionElectron BehaviourElectron Physic
The electron behaviour in the cathode fall region of a glow discharge in helium has been analysed using a one-dimensional Monte Carlo method. It is shown that the electron energy distribution function undergoes a continuous spatial evolution in a way which is incompatible with the requirements for use of the Townsend theory, and that the effective ionization coefficient has a spatial dependence very different from that predicted using the Townsend alpha coefficient in the vicinity of the negative glow. It is believed that the lowest energy group is a result of ionization close to the negative glow where the electric field is insufficient to cause significant acceleration of the ejected electrons.
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