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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Development of Multi Faraday Cup Assembly for Ion Beam Measurements from a Low Energy Plasma Focus Device
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Development of Multi Faraday Cup Assembly for Ion Beam Measurements from a Low Energy Plasma Focus Device

机译:低能量等离子体聚焦装置用于离子束测量的多法拉第杯组件的开发

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A multiple Faraday cup assembly has been developed for measuring pulsed ion beam of a low energy plasma focus device. The Faraday cups operating in biased ion collector mode have nanosecond response and these have been used to determine the energy spectrum and flux of fast nitrogen ion beam emerging out of the pinched plasma column. The design feature that makes our Faraday cups unique is that they can register ion energy of higher kinetic value (~hundreds of keV) as well as lower kinetic value (~keV). It has been possible to register the ion energy upto a lower kinetic energy threshold of ~5 keV which is a value much lower than that obtained in any previous works. The correlation of the ion beam flux with filling gas pressure is also reported. Angular distribution of ion measurement reveals a highly anisotropic emission indicating an ion dip at the electrode axis.
机译:已经开发出多个法拉第杯组件来测量低能等离子体聚焦装置的脉冲离子束。以偏置离子收集器模式运行的法拉第杯具有纳秒响应,这些已被用于确定从压缩等离子体柱中出来的快速氮离子束的能谱和通量。使我们的法拉第杯具有独特性的设计特征是,它们可以记录较高动力学值(约keV)和较低动力学值(约keV)的离子能量。可以将离子能量记录到较低的动能阈值〜5 keV,该阈值比以前任何工作中获得的值都低得多。还报道了离子束通量与填充气体压力的相关性。离子测量的角度分布显示出高度各向异性的发射,表明离子在电极轴处浸入。

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