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Internal plasma potential profiles in a laboratory-model Hall thruster

机译:实验室模型霍尔推力器中的内部等离子体电势曲线

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The Plasmadynamics and Electric Propulsion Laboratory High-speed Axial Reciprocating Probe system is used in conjunction with a floating emissive probe to measure plasma potential in the discharge chamber of the P5 Hall thruster. Plasma potential measurements are made at a constant voltage, 300 V, at two different discharge current conditions: 5.4 and 10 A. The plasma potential contours for the 5.4 A case indicate that the acceleration region begins several millimeters upstream of the exit plane, extends several centimeters downstream, and is uniform across the width of the discharge chamber. The 10 A case is similar to the 5.4 A case with the exception that the acceleration region is shifted downstream on centerline. Axial electric field profiles, computed from the measured potential, show a double peak structure in the 5.4 A case, indicating a zone of ion deceleration. Perturbations to the discharge current are shown to correspond spatially with the location of the peak electric field indicating that thruster perturbations may result from a disturbance to the Hall current, as opposed to ablation of probe material. This conclusion is supported by the lack of any observable material ablation. (C) 2001 American Institute of Physics. [References: 20]
机译:等离子体动力学和电力推进实验室高速轴向往复探针系统与浮动发射探针结合使用,可测量P5霍尔推力器放电室中的等离子体电势。在300 V的恒定电压下,在5.4和10 A两种不同的放电电流条件下进行等离子体电势测量。5.4 A情况下的等离子体电势轮廓表明,加速区域始于出口平面上游几毫米,延伸了几毫米。下游约1厘米,并且在整个排放室的宽度上是均匀的。 10 A情况类似于5.4 A情况,不同之处在于加速区域在中心线上向下游移动。根据测得的电势计算出的轴向电场曲线在5.4 A情况下显示出双峰结构,表明存在离子减速区域。示出了对放电电流的扰动在空间上与峰值电场的位置相对应,这表明与对探针材料的消融相反,推进器扰动可能是由对霍尔电流的扰动引起的。缺乏任何可观察到的材料消融支持了这一结论。 (C)2001美国物理研究所。 [参考:20]

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