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Laser Induced Nano and Micro Structures of Molybdenum Surface Applied in Multistage Depressed Collector for Secondary Electron Suppression

机译:激光诱导的纳米和微结构的钼表面施加在多级抑制收集器中,用于二次电子抑制

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摘要

The laser processing molybdenum metal surface method was first proposed to enhance the efficiency of multistage depressed collectors (MDCs). In this study, the secondary electron yield (SEY), surface geometrical morphologies and chemical states of laser processed Mo metal samples were characterized. For the first time, the effects of laser parameters and incident angle of primary electrons on the SEY property of laser induced nano and micro structures of molybdenum surface were investigated. The influence rule of laser processing patterns, power, pitch spacing, scanning speed on surface morphologies and SEY were systematically explored. A maximum SEY of laser processed Mo metal less than one was achieved. The Mo 3d and O 1s core level spectra of Mo metal before and after laser processing were analyzed in this study. Furthermore, the corresponding oxidation states of Mo as well as the relative distribution were elucidated.
机译:首先提出了激光加工钼金属表面方法以增强多级抑制收集器(MDC)的效率。在该研究中,表征了二次电子产量(SEY),表面几何形态和激光加工MO金属样品的化学品。首次首次,研究了激光参数和初级电子对激光诱导的纳米和微结构的Sey Electuration的影响的影响。系统地探索了激光加工模式,功率,沥青间距,扫描速度对表面形态和SEY的影响规律。实现了少于一个的激光加工Mo金属SEY。在该研究中分析了Mo金属的Mo 3D和O 1S核心水平光谱。此外,阐明了MO的相应氧化状态以及相对分布。

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