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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >THE INFLUENCE OF ELECTRON REFLECTION AT THE ELECTRODE AND SECONDARY ELECTRON EMISSION ON A STRONGLY MAGNETIZED LOW-PRESSURE RF DISCHARGE
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THE INFLUENCE OF ELECTRON REFLECTION AT THE ELECTRODE AND SECONDARY ELECTRON EMISSION ON A STRONGLY MAGNETIZED LOW-PRESSURE RF DISCHARGE

机译:电子反射和二次电子发射对强磁化低压射频放电的影响

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With the help of a particle-in-cell/Monte Carte simulation, we study a strongly asymmetric cylindrical low-pressure RF discharge in an axial magnetic field. In particular, the effects of electron reflection from the electrodes and of ion-induced secondary electron emission are studied. The process alone does not change the plasma characteristics; this fact can be traced back to the gyro-motion of electrons in the electrode sheath, which brings non-colliding electrons back to the electrode. If electron reflection is allowed for, the overall plasma density is substantially increased. This effect is found qualitatively in experiments. We furthermore demonstrate the existence of high-energy electrons throughout the bulk plasma; this fact is reminiscent of the well-known gamma-regime of unmagnetized RF discharges. [References: 35]
机译:借助于粒子/蒙特卡特模拟,我们研究了轴向磁场中的强非对称圆柱低压射频放电。特别地,研究了电子从电极反射以及离子诱导的二次电子发射的影响。单独的过程不会改变等离子体的特性。这个事实可以追溯到电极鞘中电子的陀螺运动,它将非碰撞电子带回电极。如果允许电子反射,则总体等离子体密度将大大增加。在实验中定性地发现了这种效果。我们进一步证明了整个体等离子体中都存在高能电子。这个事实使人联想到未磁化的RF放电的众所周知的伽马制度。 [参考:35]

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