首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Effects of anode geometry on forward wide-angle neon ion emissions in 3.5 kJ plasma focus device by novel mega-size panorama polycarbonate image detectors
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Effects of anode geometry on forward wide-angle neon ion emissions in 3.5 kJ plasma focus device by novel mega-size panorama polycarbonate image detectors

机译:阳极几何上的效果在巨型全景聚碳酸酯图像探测器中3.5 kJ等离子聚焦装置前向前广角氖离子排放

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摘要

Forward wide-angle neon ion emissions in a 3.5 kJ plasma focus device (PFD) were studied using 5 different anode top geometries; hollow-end cylinder, solid triangle, solid hemisphere, hollow-end cone and flat-end cone. Position-sensitive mega-size panorama polycarbonate ion image detectors (MS-PCID) developed by dual-cell circular mega-size electrochemical etching (MS-ECE) systems were applied for processesing wide-angle neon ion images on MS-PCIDs exposed on the PFD cylinder top base under a single pinch shot. The images can be simply observed, analyzed and relatively quantified in terms of ion emission angular distributions even by the unaided eyes. By analysis of the forward neon ion emission images, the ion emission yields, ion emission angular distributions, iso-fluence ion contours and solid angles of ion emissions in 4π PFD space were determined. The neon ion emission yields on the PFD cylinder top base are in an increasing order ~2.1×10~9, ~2.2 ×10~9, ~2.8×10~9, ~2.9×10~9, and ~3.5×10~9 neon ions/shot for the 5 stated anode top geometries respectively. The panorama neon ion images as diagnosed even by the unaided eyes demonstrate the lowest and highest ion yields from the hollow-end cylinder and flat-end cone anode tops respectively. Relative dynamic qualitative neon ion spectrometry was made by the unaided eyes demonstrating relative neon ion energy as they appear. The study also demonstrates the unique power of the MS-PCID/MS-ECE imaging system as an advanced state-of-the-art ion imaging method for wide-angle dynamic parametric studies in PFD space and other ion study applications.
机译:使用5种不同的阳极顶部几何形状研究了3.5kJ等离子体聚焦装置(PFD)中的前方广角霓虹离子排放;空心圆柱,固体三角形,固体半球,空心端锥和平端锥。由双细胞圆形巨型电化学蚀刻(MS-ECE)系统开发的位置敏感的兆型全景聚碳酸酯离子图像探测器(MS-PCID)用于在暴露于的MS-PCID上加工广角氖离子图像PFD气缸顶部底座在单个捏镜下。即使在离子发射角度分布中,也可以简单地观察图像,即使是由独特的眼睛也可以分析和相对量化。通过分析前向氖离子发射图像,确定离子发射产率,离子发射角分布,离子排放中的离子排放中的离子排放的固体角度。 PFD气缸顶部基座上的霓虹离子排放产量径向〜2.1×10〜9,〜2.2×10〜9,〜2.8×10〜9,〜2.9×10〜9,〜3.5×10〜 9分别为5个霓虹子离子/拍摄的阳极顶部几何形状。甚至通过辅作眼睛诊断的全景氖离子图像分别展示了来自中空缸和平端锥形阳极顶部的最低和最高的离子产量。通过典型的眼睛根据它们出现而展示相对氖离子能的术语来制造相对动态定性氖离子光谱法。该研究还展示了MS-PCID / MS-ECE成像系统的独特力量,作为PFD空间和其他离子研究应用中的广角动态参数研究的先进最先进的离子成像方法。

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