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Electron reflection and secondary emission characteristics of sputter-textured pyrolytic graphite surfaces

机译:溅射织构热解石墨表面的电子反射和二次发射特性

摘要

Low secondary and reflected primary electron emission from the collector electrode surfaces is important for optimum collector efficiency and hence for high overall efficiency of microwave amplifier tubes used in communication satellites and in military systems. Ion sputter texturing of the surface effectively suppresses electron emission from pyrolytic graphite, which is a promising collector electrode material. Secondary and reflected primary electron emission characteristics of sputter textured pyrolytic graphite surfaces with microstructures of various sizes and densities are presented. The microstructure with the lowest electron emission levels, less than those of soot, consists of a dense array of tall, thin spires.
机译:从收集器电极表面发出的次级和反射一次电子较低,这对于优化收集器效率并因此对于在通信卫星和军事系统中使用的微波放大器管的高整体效率至关重要。表面的离子溅射织构化有效地抑制了热解石墨的电子发射,热解石墨是一种很有前途的集电极材料。提出了具有各种尺寸和密度的微观结构的溅射织构热解石墨表面的次级和反射初级电子发射特性。具有最低电子发射水平(小于烟灰)的微观结构由高而细的尖杆密集阵列组成。

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