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Measurement of XeI and XeII velocity in the near exit plane of a low-power Hall effect thruster by light induced fluorescence spectroscopy

机译:测量低功率近端出射面的XeI和XeII速度

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摘要

Near exit plane non-resonant light induced fluorescence spectroscopy is performed in a Hall effect low-power Xenon thruster at discharge voltage of 250~V and anode flow rate of 0.7~mg/sec. Measurement of the axial and radial velocity components are performed, exciting the $6s~^2[3/2]^o_2\rightarrow6p~^2[3/2]_2$ transition at $823.16$~nm in XeI and the $5d~[4]_{7/2}\rightarrow6p~[3]^o_{5/2}$ transition at $834.724$~nm in XeII. No significant deviation from the thermal velocity is observed for XeI. Two most probable ion velocities are registered at a given position with respect to the thruster axis, which are mainly attributed to different areas of creation of ions inside the acceleration channel. The spatial resolution of the set-up is limited by the laser beam size (radius of the order of $0.5$~mm) and the fluorescence collection optics, which have a view spot diameter of $8$~mm.
机译:在霍尔效应低功率氙气推进器中,在放电电压为250〜V,阳极流速为0.7〜mg / sec的条件下,进行近出口平面非共振光诱导荧光光谱分析。进行轴向和径向速度分量的测量,激发XeI中的$ 6s〜^ 2 [3/2] ^ o_2 \ rightarrow6p〜^ 2 [3/2] _2 $在XeI中的过渡$ 823.16 $〜nm和$ 5d〜 [4] _ {7/2} \ rightarrow6p〜[3] ^ o_ {5/2} $在XeII中的过渡为$ 834.724 $ nm。对于XeI,没有观察到与热速度的显着偏差。相对推力器轴在给定位置记录了两个最可能的离子速度,这主要归因于加速通道内离子产生的不同区域。装置的空间分辨率受激光束大小(半径约为$ 0.5 $〜mm)和荧光收集光学器件的限制,它们的视点直径为$ 8 $〜mm。

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