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首页> 外文期刊>Journal of surface investigation: x-ray, synchrotron and neutron techniques >Modeling of the Influence of the Thickness of an Insulating Film on a Cathode Surface on its Effective Secondary-Electron Emission Yield in Low-Current Gas Discharge
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Modeling of the Influence of the Thickness of an Insulating Film on a Cathode Surface on its Effective Secondary-Electron Emission Yield in Low-Current Gas Discharge

机译:模拟绝缘膜厚度对阴极表面上的影响低电流气体排放中的有效二次电子发射产量

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A model of low-current (Townsend) gas discharge in the presence of a thin insulating film on the surface of a cathode is formulated. It takes into account, along with ion-induced secondary-electron emission from the cathode, also the field emission of electrons from the cathode metal substrate into the film under a strong electric field, which is generated in the insulator when the current flows in the discharge. The emission efficiency of the film and the discharge characteristics are calculated as functions of its thickness. It is shown that the experimentally observed nonmonotonic dependences of the effective secondary-electron emission yield of the cathode and discharge ignition voltage on the film thickness can be explained by the nonuniformity of the electric-field distribution across the film.
机译:配制在阴极表面上薄绝缘膜存在下的低电流(Townsend)气体放电模型。 考虑到电流在电流流动时在绝缘体中产生的来自阴极的离子金属基板的离子金属基板的电磁场发射的离子诱导的二次电子发射。 释放。 薄膜和放电特性的发射效率计算为其厚度的函数。 结果表明,通过在整个薄膜上的电场分布的不均匀性,可以解释膜厚度上的实验观察到的阴极和放电点火电压的有效二次电子发射产率的非单调依赖性。

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