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Measurements of ion energy distributions by Doppler shift spectroscopy in an inertial-electrostatic confinement device

机译:惯性静电约束装置中通过多普勒频移光谱法测量离子能量分布

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摘要

Doppler shift spectroscopy was carried out on the discharge in a spherically symmetric inertial-electrostatic confinement system. This enabled the ion energy distributions, types, and densities of ionic species to be determined. A weakly ionized hydrogen radio-frequency discharge was used as the ion source for two spherical and concentric electrostatic grids. The inner and outer grids were the cathode and anode, respectively. It was found that the ion energy distribution consisted of a non-Maxwellian directional component, as well as a spatially isotropic Maxwellian distribution. The directional component consisted of three broadened energy peaks belonging to H-3(+) (20%), H-2(+) (60%), and H+ (20%). These ions had energies approximately 20% of the cathode potential. The temperature (in electronvolts) of the Maxwellian distribution was approximately 15% of the cathode potential. (C) 2001 American Institute of Physics. [References: 14]
机译:在球形对称惯性-静电限制系统中对放电进行多普勒频移光谱分析。这使得能够确定离子种类的离子能量分布,类型和密度。使用弱电离的氢射频放电作为两个球形和同心静电网格的离子源。内部和外部网格分别是阴极和阳极。发现离子能量分布由非麦克斯韦方向性成分以及空间各向同性麦克斯韦分布组成。方向成分由三个加宽的能量峰组成,分别属于H-3(+)(20%),H-2(+)(60%)和H +(20%)。这些离子的能量约为阴极电位的20%。麦克斯韦分布的温度(以电子伏特计)约为阴极电势的15%。 (C)2001美国物理研究所。 [参考:14]

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