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Calculation of the parameters of a high-current reflective discharge with a hot cathode

机译:热阴极大电流反射放电的参数计算

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A physical model of a self-sustaining reflective discharge is formulated based on the continuity equation for the electron flux and the equation of energy balance on the hot cathode. The model allows one to calculate the current-voltage characteristic of a high current reflective discharge with a hot cathode in a wide range of magnetic fields, discharge cell dimensions, and cathode material work functions. An advantage of the model is that it is capable of describing the ordinary operating mode of a reflective discharge with cold cathodes as a limiting case. The model predicts the existence of two discharge operating modes with thermionic electron emission on the cathode: a low-voltage mode with a high current density and a high-voltage mode with a significantly lower current density. It is shown that the low-voltage operating mode can occur in a wide range of the discharge currents, while the discharge voltage can be substantially reduced by using a cathode material with a low work function. (c) 2005 Pleiades Publishing, Inc.
机译:基于电子通量的连续性方程和热阴极上的能量平衡方程,建立了自持反射放电的物理模型。该模型允许人们在宽范围的磁场,放电室尺寸和阴极材料功函数中计算带有热阴极的高电流反射放电的电流-电压特性。该模型的优点在于,它能够描述以冷阴极为极限情况的反射放电的常规工作模式。该模型预测了在阴极上有热电子发射的两种放电操作模式的存在:具有高电流密度的低压模式和具有明显较低电流密度的高压模式。示出了低压工作模式可以在大范围的放电电流中发生,而通过使用具有低功函数的阴极材料可以实质上降低放电电压。 (c)2005年Pleiades Publishing,Inc.

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