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Erosion of the Field Emitter Surface Exposed to Low-Energy Ions

机译:暴露于低能离子的场发射极表面的腐蚀

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The radiation-induced erosion of the tungsten field emitter surface exposed to low-energy ions is studied by field ion microscopy and electron microscopy. During the bombardment, surface atoms are displaced to sites with lower coordination numbers and nanoasperities, generating a locally enhanced electric field, arise on the surface in a jump-like manner, which modifies the characteristics of the emitters. The field evaporation of the asperities produces cavities; hence, the erosion can be described in terms of blistering. Quasi-static surface erosion mechanisms are considered. It is shown that nanoblistering can be related to helium absorption in metal surface layers.
机译:通过场离子显微镜和电子显微镜研究了暴露于低能离子的钨场发射体表面的辐射诱导腐蚀。在轰击期间,表面原子被转移到具有较低配位数和纳米级不规则性的位点,从而在表面上以跳跃状方式产生局部增强的电场,从而改变了发射体的特性。粗糙物的现场蒸发会产生空腔。因此,可以用起泡来描述腐蚀。考虑了准静态表面腐蚀机理。结果表明,纳米起泡可能与金属表面层中的氦吸收有关。

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