Chemistry and surface physics phenomena involved in the activation of impregnated tungsten dispenser cathodes

L. Falce, L. Garbini
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引用次数: 1

Abstract

Summary form only given. In most fast wave and slow wave vacuum electron devices dispenser cathodes, which are made of porous tungsten impregnated with barium calcium aluminate, are used as the electron source. A very necessary process called activation must occur that results in barium uniformly covering the surface and remaining there for a sufficient time to provide a lowered work function. The key to this is the formation of a dipole of barium over oxygen over the metal substrate from which the electrons are pulled. A fully activated surface must have every available site occupied by the barium-oxygen dipole. This not only provides the lowest work function but also assures a constant and uniform source of electrons during the life of the device. The chemical reactions that take place and the processes required to remove the unwanted species from the surface are described.
浸渍钨分配器阴极活化所涉及的化学和表面物理现象
只提供摘要形式。在大多数快波和慢波真空电子器件中,分配器阴极是由多孔钨浸渍铝酸钡钙制成的,作为电子源。必须发生一个非常必要的过程,称为活化,使钡均匀地覆盖表面,并在那里停留足够的时间,以提供一个较低的功函数。关键是在金属衬底上形成钡与氧的偶极子,电子从金属衬底上被拉出来。一个完全活化的表面必须有每一个可用的位置被钡氧偶极子占据。这不仅提供了最低的功函数,而且还保证了在设备寿命期间恒定和均匀的电子源。描述了发生的化学反应和从表面去除不需要的物质所需的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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