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Physical Mechanism of Operation of Osmium-Coated Cathodes of Microwave Devices

机译:微波器件包锇阴极的物理工作机理

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The electronic structure and physical chemistry of an osmium-coated cathode are determined, and the physical mechanism of the effect of osmium on the electronic structure and emission properties of a dispenser cathode is investigated. The studies are carried out by optical spectroscopy, electron spectroscopy for chemical analysis, and electron energy-loss spectroscopy. The emission properties of standard dispenser cathodes are determined by oxygen vacancies in BaO crystallites; the surface oxygen vacancies form acceptor surface states, which is accompanied by upward bending of the oxide energy bands. In osmium-coated dispenser cathodes, osmium atoms are dissolved in BaO crystallites and form extra donor surface states at the surface of crystallites, which results in downward bending of the oxide energy bands and, correspondingly, a decrease in the work function of the cathode material.
机译:测定了包覆锇阴极的电子结构和物理化学性质,研究了锇对点胶阴极电子结构和发射特性影响的物理机理。这些研究是通过光谱学、用于化学分析的电子光谱学和电子能量损失谱学进行的。标准点胶阴极的发射特性由BaO微晶中的氧空位决定;表面氧空位形成受体表面态,并伴有氧化物能带的向上弯曲。在包覆锇的分配器阴极中,锇原子溶解在BaO微晶中,并在微晶表面形成额外的供体表面状态,导致氧化物能带向下弯曲,相应地降低正极材料的功函数。

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