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Fast plasma discharge capillary design as a high power throughput soft x-ray emission source

机译:快速等离子体放电毛细管设计,可作为高功率通量的软X射线发射源

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We present the experimental details and results from a low energy but high repetition rate compact plasma capillary source for extreme ultraviolet and soft x-ray research and applications. Two lengths of capillary are mounted in two versions of a closely related design. The discharge operates in 1.6 and 3.2 mm inner diameter alumina capillaries of lengths 21 and 36 mm. The use of water both as dielectric and as coolant simplifies the compact low inductance design with nanosecond discharge periods. The stored electrical energy of the discharge is approximately 0.5 J and is provided by directly charging the capacitor plates from an inexpensive insulated-gate bipolar transistor in 1 μs or less. We present characteristic argon spectra from plasma between 30 and 300 Å as well as temporally resolved x-ray energy fluence in discrete bands on axis. The spectra also allow the level of ablated wall material to be gauged and associated with useful capillary lifetime according to the chosen configuration and energy storage. The connection between the electron beams associated with the transient hollow cathode mechanism, soft x-ray output, capillary geometry, and capillary lifetime is reported. The role of these e-beams and the plasma as measured on-axis is discussed. The relation of the electron temperature and the ionization stages observed is discussed in the context of some model results of ionization in a non-Maxwellian plasma. © 2010 American Institute of Physics Article Outline INTRODUCTION EXPERIMENTAL DESCRIPTION DISCUSSION CONCLUSIONS
机译:我们介绍了用于低强度紫外线和软X射线研究和应用的低能量,高重复率紧凑型等离子体毛细管源的实验细节和结果。两种长度的毛细管安装在紧密相关设计的两个版本中。放电在长度为21和36 mm的内径为1.6和3.2 mm的氧化铝毛细管中进行。将水既用作电介质又用作冷却剂,可简化紧凑的低电感设计,并具有纳秒级的放电周期。放电的存储电能约为0.5 J,是通过从便宜的绝缘栅双极型晶体管以1μs或更短的时间对电容器极板直接充电来提供的。我们介绍了从30到300Å之间的等离子体的特征氩光谱,以及在轴上的不连续带中的时间分辨x射线能量通量。光谱还允许根据所选的配置和能量存储来测量烧蚀壁材料的水平,并与有用的毛细管寿命相关联。报道了与瞬态空心阴极机理,软X射线输出,毛细管几何形状和毛细管寿命相关的电子束之间的连接。讨论了这些电子束和等离子体在轴上的作用。在非麦克斯韦等离子体中电离的一些模型结果的背景下,讨论了观察到的电子温度与电离阶段的关系。 ©2010美国物理研究所文章大纲简介实验说明讨论结论

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