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Collisionless Heating of Electrons by Meandering Chaos and Its Application to a Low-Pressure Plasma Source
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Near a magnetic neutral line, where the magnetic field vanishes, the adiabatic invariants of charged particle motion are destroyed, and hence the number of degrees of freedom increases. When a radio-frequency electric field is applied to the system, the particle motion becomes strongly chaotic. This effect can be used to produce heat in a plasma in the absence of any collisional process. The kinetic entropy of an electron orbit increases very rapidly by the mixing effect. The velocity distribution is approximated by a Gaussian function, so the thermodynamic entropy production can also be estimated. This collisionless heating mechanism enables high-efficiency plasma production at a low gas pressure.
Title: Collisionless Heating of Electrons by Meandering Chaos and Its Application to a Low-Pressure Plasma Source
Description:
Near a magnetic neutral line, where the magnetic field vanishes, the adiabatic invariants of charged particle motion are destroyed, and hence the number of degrees of freedom increases.
When a radio-frequency electric field is applied to the system, the particle motion becomes strongly chaotic.
This effect can be used to produce heat in a plasma in the absence of any collisional process.
The kinetic entropy of an electron orbit increases very rapidly by the mixing effect.
The velocity distribution is approximated by a Gaussian function, so the thermodynamic entropy production can also be estimated.
This collisionless heating mechanism enables high-efficiency plasma production at a low gas pressure.
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