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Effect of Microimpurities on the Electronic Structure and Emission Properties of Microwave Device Cathode Materials

机译:微波器件微波器件阴极材料电子结构和排放性能的影响

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Abstract The effect of microimpurities on the electronic structure of barium oxide has been studied using optical and electron spectroscopy. As was shown previously, oxygen vacancies play a decisive role in the formation of the emission properties of barium oxide crystallites; however, the possible role of microimpurities in barium oxide crystallites was not considered. It has been established that some microimpurities, including nickel, scandium, and combination of calcium and strontium, order oxygen vacancies in barium oxide crystallites, which directly affects oxygen diffusion in them. Nickel and scandium impurities form additional surface states near the edge of the valence band, which is accompanied by a decrease in the electronic work function of a cathode material.
机译:摘要采用光学和电子光谱研究了微量化对氧化钡电子结构的影响。如前所述,氧空缺在氧化钡微晶的发射性能中起决定性作用;然而,不考虑微量脂肪素在氧化钡微晶中的可能作用。已经确定一些微量尺寸,包括钙,钪和钙和锶的组合,氧化钡微晶中的氧空位,直接影响它们中的氧气。镍和钪杂质在价带的边缘附近形成额外的表面状态,其伴随着阴极材料的电子工作功能的减少。

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