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Breakthrough in 4π ion emission mechanism understanding in plasma focus devices

机译:突破等离子聚焦装置中4π离子发射机理的认识

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摘要

Ion emission angular distribution mechanisms in plasma focus devices (PFD) have not yet been well developed and understood being due to the lack of an efficient wide-angle ion distribution image detection system to characterize a PFD space in detail. Present belief is that the acceleration of ions points from “anode top” upwards in forward direction within a small solid angle. A breakthrough is reported in this study, by mega-size position-sensitive polycarbonate ion image detection systems invented, on discovery of 4π ion emission from the “anode top” in a PFD space after plasma pinch instability and radial run-away of ions from the “anode cathodes array” during axial acceleration of plasma sheaths before the radial phase. These two ion emission source mechanisms behave respectively as a “Point Ion Source” and a “Line Ion Source” forming “Ion Cathode Shadows” on mega-size detectors. We believe that the inventions and discoveries made here will open new horizons for advanced ion emission studies towards better mechanisms understanding and in particular will promote efficient applications of PFDs in medicine, science and technology.
机译:等离子体聚焦装置(PFD)中的离子发射角度分布机制尚未得到很好的开发和理解,这是由于缺少有效的广角离子分布图像检测系统来详细描述PFD空间的特征。目前的信念是离子的加速度在一个小立体角内从“阳极顶部”指向向前。在这项研究中报道了一项重大突破,该发现是通过发明的大型位置敏感的聚碳酸酯离子图像检测系统发现的,在等离子收缩不稳定和离子径向失控后,PFD空间中“阳极顶部”出现了4π离子发射在径向相之前等离子鞘层的轴向加速过程中,“阳极阴极阵列”。这两种离子发射源机制分别在大型检测器上充当“点离子源”和“线离子源”,形成“离子阴极阴影”。我们相信,这里的发明和发现将为高级离子发射研究开辟新的视野,以更好地理解机理,尤其是将促进PFD在医学,科学和技术中的有效应用。

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