The cathode array effects on features and reproducibility of emitted hard x-rays, and anode erosion in a small plasma focus device

IF 1.3 Q3 ORTHOPEDICS
D. Piriaei, T. D. Mahabadi
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引用次数: 1

Abstract

Using a small (450 J) Mather-type plasma focus device, this research investigates the effects of cathode rod removal from the cathode array in two steps on hard x-ray emission, both in total and specifically from the plasmoid. The effect on anode rod erosion is also measured. Six hard x-ray detectors were placed around the chamber to measure the emitted hard x-rays. By reducing the number of cathode rods, some features of these hard x-rays such as peak intensity and pulse yield decreased and were deteriorated. Besides, the capability of the device for producing and reproducing the hard x-rays with roughly similar and repeatable characteristics diminished. Moreover, the anode erosion took place during the breakdown phase and by using the detectors around the chamber, similar features were obtained both for the total and the plasmoid hard x-rays, but with different scales. The cathode rod removal could violate the symmetry and uniform formation of the current sheath layer during the breakdown phase and could weaken and change the direction of the Lorentz force vector acting on the current sheath layer during the axial phase. It also causes discharge delay and decreases the axial and radial velocities of the current sheath layer which would result in a weak pinch effect and reduced number of energetic runaway electrons inside the plasma column during the pinch phase. These electrons, by colliding the anode surface, are mainly responsible for producing the great portion of the emitted hard x-ray. On the contrary and based on a different mechanism, the cathode rod removal enhances the number of the runaway electrons during the breakdown phase which increases the anode erosion and enhances the impurities that eventually leads to a weak emission of low intensity hard x-rays.
阴极阵列对小型等离子体聚焦装置中发射的硬x射线特征和再现性的影响以及阳极侵蚀
本研究使用小型(450 J)Mather型等离子体聚焦装置,研究了分两步从阴极阵列中移除阴极棒对硬x射线发射的影响,包括总的和特别是对等离子体团的影响。还测量了对阳极棒腐蚀的影响。六个硬x射线探测器被放置在腔室周围,以测量发射的硬x射线。通过减少阴极棒的数量,这些硬x射线的一些特征,如峰值强度和脉冲产率降低并恶化。此外,该设备产生和再现具有大致相似和可重复特性的硬x射线的能力减弱。此外,阳极侵蚀发生在击穿阶段,通过使用腔室周围的探测器,总x射线和等离子体团硬x射线都获得了类似的特征,但具有不同的尺度。阴极棒的移除可能会在击穿阶段破坏电流鞘层的对称性和均匀性,并可能削弱和改变轴向阶段作用在电流鞘层上的洛伦兹力矢量的方向。它还导致放电延迟,并降低电流鞘层的轴向和径向速度,这将导致弱箍缩效应,并减少箍缩阶段等离子体柱内高能失控电子的数量。这些电子通过碰撞阳极表面,主要负责产生大部分发射的硬x射线。相反,基于不同的机制,阴极棒的去除增强了击穿阶段失控电子的数量,这增加了阳极侵蚀并增强了杂质,最终导致低强度硬x射线的弱发射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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