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Hybrid plasma source based simultaneously on laser ablation and vacuum arc discharge for plasma propulsion

机译:同时基于激光烧蚀和真空电弧放电进行等离子体推进的混合等离子体源

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A concept of a hybrid plasma source with a liquid gallium-indium propellant as a thruster for micro-satellites is proposed. Plasma source operates in two regimes: generating the laser ablation plasma and generating the plasma of low voltage vacuum arc discharge with a laser triggering. In the discharge cell of the source, the cathode is a stainless steel capillary tube filled with working liquid. The meniscus of working liquid is the target for an intense laser beam. At the absence of voltage in the discharge cell, only the laser ablation plasma is generated. When even a relatively low voltage (<;1 kV) is applied, the ablation initiates high-current vacuum arc discharge. In the experiment, waveforms of current and voltage of the discharge are recorded, high-speed images of a plasma glow are registered. Regularities and peculiarities of vacuum arc discharge triggered by the laser ablation of the cathode are studied and discussed.
机译:提出了一种混合等离子体源的概念,该混合等离子体源具有液态镓铟推进剂作为微型卫星的推进器。等离子体源在两种情况下运行:生成激光烧蚀等离子体和通过激光触发生成低压真空电弧放电的等离子体。在离子源的放电室中,阴极是装满工作液的不锈钢毛细管。工作液体的弯液面是强激光束的目标。在放电室中不存在电压的情况下,仅产生激光烧蚀等离子体。当甚至施加相对较低的电压(<; 1 kV)时,消融也会引发大电流真空电弧放电。在实验中,记录放电的电流和电压的波形,记录等离子体辉光的高速图像。研究和讨论了由阴极激光烧蚀触发的真空电弧放电的规律和特殊性。

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