首页> 外文期刊>Russian physics journal >Influence of the Thermo-Field Electron Emission from the Cathode with a Thin Insulating Film on the Film Emission Efficiency and Ignition Voltage of the Townsend Gas Discharge
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Influence of the Thermo-Field Electron Emission from the Cathode with a Thin Insulating Film on the Film Emission Efficiency and Ignition Voltage of the Townsend Gas Discharge

机译:薄膜发射效率薄绝缘膜的热场电子发射对薄膜发射效率和冠部气体排放的点火电压的影响

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摘要

A model of the thermo-field electron emission from the metal cathode with a thin insulating surface film at temperatures of 200-400 K is developed. An expression for the film emission efficiency in the gas discharge is obtained. The efficiency is equal to the fraction of electrons emitted into the film from the metal substrate, which enter the discharge volume and increase the effective secondary-electron emission yield of the cathode. It is shown that the thermo-field mechanism of electron emission influences noticeably the ignition voltage of the low-current discharge with such cathode at rather low temperatures exceeding the room temperature by less than 100 K.
机译:开发了在200-400k温度下的具有薄绝缘表面膜的金属阴极的热场电子发射的模型。 获得气体放电中薄膜发射效率的表达。 效率等于从金属基板排放到薄膜中的电子的级分,该金属基板进入放电体积并增加阴极的有效二次电子发射产率。 结果表明,电子发射的热场机制显着影响低电流放电的点火电压,在相当低的温度下超过室温小于100k。

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