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Preparation and characterization of single RE_2O_3-Mo secondary emission materials

机译:单一RE_2O_3-Mo二次发射材料的制备与表征

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摘要

La_2O_3-Mo, Y_2O_3-Mo, Gd_2O_3-Mo and Ce_2O_3-Mo were prepared by liquid-liquid doping combined with spark plasma sintering. The microstructure and surface behaviour of rare earth oxide of the cathode have been studied by microscope, Auger Electron Spectroscopy (AES) and X-ray Photoelectron Spectroscopy (XPS) methods. Among these four kinds of cathode, Y_2O_3-Mo cathode exhibits the best secondary emission property, i.e., the maximum secondary emission yield could reach 5.24. The penetration depth of primary electrons and escape depth of secondary electrons have been calculated and the energy distribution of primary electrons in the cathode has been simulated by Monte Carlo method. Y_2O_3-Mo cathode has the largest penetration depth and escape depth, which could be attributed to the highest secondary electron emission yield of the cathode.
机译:通过液-液掺杂结合火花等离子体烧结制备了La_2O_3-Mo,Y_2O_3-Mo,Gd_2O_3-Mo和Ce_2O_3-Mo。通过显微镜,俄歇电子能谱(AES)和X射线光电子能谱(XPS)方法研究了阴极稀土氧化物的微观结构和表面行为。在这四种阴极中,Y_2O_3-Mo阴极表现出最好的二次发射性能,即最大二次发射产率可达5.24。计算了一次电子的穿透深度和二次电子的逸出深度,并通过蒙特卡罗方法模拟了阴极中一次电子的能量分布。 Y_2O_3-Mo阴极具有最大的穿透深度和逸出深度,这可以归因于阴极的二次电子发射率最高。

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