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Hall-current ion source with improved ion beam energy distribution

机译:具有改善的离子束能量分布的霍尔电流离子源

摘要

A Hall-current ion source with a narrow ion beam energy distribution is presented. A narrow ion beam energy distribution is provided by a utilization of a multi-chamber anode through which a working gas is applied and delivers a uniform working gas distribution in a discharge channel. Introduction of a working gas through a lower part of anode makes applied electric potential in a narrow area and leading to enhanced conditions for a working gas ionization, high ion beam current, high translation of a discharge voltage into a “monochromatic” ion beam mean energy distribution. A multi-chamber anode with a slit exit for introduction of a working gas into area under anode is utilized to prevent a backflow of insulating and dielectric depositions on anode parts, and under anode area makes a nominal operation with reactive gases without a phenomenon called as “anode poisoning” during long operating hours. The ion source with a shielded Hot Filament design shows very effective ion beam neutralization properties; it produces less heating of the substrate than a traditional one; it has a cleaner ion beam because its beam is not contaminated by the Hot Filament material particles. In the design with two Hot Filaments the ion source operation is extended for tens of hours.
机译:提出了具有窄离子束能量分布的霍尔电流离子源。通过利用多室阳极提供狭窄的离子束能量分布,通过该多室阳极施加工作气体,并在放电通道中提供均匀的工作气体分布。通过阳极下部引入工作气体会使施加的电势在狭窄的区域内产生,从而改善了工作气体电离的条件,高离子束电流,高放电电压转换为“单色”离子束平均能量分配。利用带有狭缝出口的多室阳极,可将工作气体引入阳极下方的区域,以防止绝缘和介电沉积物在阳极部分上回流,并且在阳极区域下方使用反应性气体进行标称运行,而没有所谓的现象长时间工作会导致“阳极中毒”。带有屏蔽热丝设计的离子源显示出非常有效的离子束中和特性。与传统的加热方式相比,它产生的加热较少。它具有更清洁的离子束,因为其束不会被热丝材料颗粒污染。在具有两个热丝的设计中,离子源的运行时间延长了数十小时。

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