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Operation of an Annular Helicon Plasma Source

机译:环形螺旋等离子体源的操作

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The plasma parameters of a nominally 1.5 kW annular helicon plasma source are measured and its feasibility as an ionization stage of a two-stage Hall thruster is investigated. All experiments are performed in a 4 by 7 m stainless steel vacuum chamber at pressures below 3.1 × 10~(-5) torr for argon and 5.6 × 10~(-5) torr for xenon. Ion number density, electron temperature, and electron energy distribution function measurements are taken at several axial and radial locations inside the device at each operating condition with a ratio-frequency-compensated Langmuir probe. The annular helicon plasma source is characterized over a range of applied radio frequencies (2-14 MHz), magnetic field strengths (0-400 G), and radio frequency forward-power settings (100-1400 W) for both argon and xenon propellants. The peak ion number density measured in the annular helicon is 2.6 × 10~(17) m~(-3) for argon and 2.4 × 10~(17) m~(-3) for xenon at 1000 W of radio frequency power. The annular helicon electron energy distribution function peak and shape vary with the radio frequency, from a minimum of 3.7 eV at 13 MHz to a maximum of 15.0 eV at 11 MHz for argon propellant over the preceding operating conditions.
机译:测量了标称值为1.5 kW的环形螺旋等离子体源的等离子体参数,并研究了其作为两级霍尔推力器电离级的可行性。所有实验均在4 x 7 m不锈钢真空室中进行,氩气压力低于3.1×10〜(-5)托,氙气压力低于5.6×10〜(-5)托。离子频率密度,电子温度和电子能量分布函数的测量是在每个工作条件下使用比率频率补偿的Langmuir探针在设备内部的几个轴向和径向位置进行的。环形螺旋等离子体源的特征是在氩气和氙气推进剂的一系列施加的射频(2-14 MHz),磁场强度(0-400 G)和射频正向功率设置(100-1400 W)范围内。在射频功率为1000 W的情况下,在环形螺旋管中测得的峰值离子数密度对于氩气为2.6×10〜(17)m〜(-3),对于氙气为2.4×10〜(17)m〜(-3)。环形螺线管电子能量分布函数的峰值和形状随无线电频率而变化,在先前的工作条件下,从13 MHz的最小值为3.7 eV到11 MHz的最大值为15.0 eV。

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