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Theory of Thermionic and Secondary Emission Properties of Palladium-Barium Cathodes of Microwave Electrovacuum Devices

机译:微波电扫描器钯 - 钡阴极的热离子和二次排放性能

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摘要

A model of the surface structure of a palladium-barium cathode is proposed and the Dionne secondary electron emission model is used to calculate the dependence of the secondary electron emission coefficient of barium oxide crystallites forming on the surface of a cathode during its thermal activation on the temperature and oxygen vacancy concentration in the oxide. It is shown that the emission properties of a palladium-barium cathode significantly depend on both the emission properties of barium oxide crystallites and the cathode relative surface area occupied by them. The theoretical nomograms are built that relate the measured surface-averaged work function to the secondary electron emission coefficient of a palladium-barium cathode; the nomogram parameters are the temperature, oxygen vacancy concentration in barium oxide crystallites, and the relative cathode surface area occupied by them.
机译:提出了一种钯 - 钡阴极的表面结构模型,并且狄尼二次电子发射模型用于计算其在其热激活过程中形成在阴极表面上形成的氧化钡微晶的二次电子发射系数的依赖性 氧化物中的温度和氧气空间浓度。 结果表明,钯 - 钡阴极的排放性能显着取决于氧化钡微晶的排放性能和由它们占据的阴极相对表面积。 构建理论上的载体图案,其将测量的表面平均功效与钯 - 钡阴极的二次电子发射系数相关联; 载体参数是氧化钡微晶中的温度,氧空位浓度,并且由它们占据的相对阴极表面积。

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  • 来源
    《Technical physics》 |2020年第2期|共7页
  • 作者单位

    Russian Technol Univ MIREA Moscow 119454 Russia;

    AO Pluton Moscow 105120 Russia;

    Russian Technol Univ MIREA Moscow 119454 Russia;

    Russian Technol Univ MIREA Moscow 119454 Russia;

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  • 正文语种 eng
  • 中图分类 Tb13;
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