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From short pulses to short breaks: exotic plasma bullets via residual electron control

机译:从短脉冲到短脉冲:通过残留电子控制产生的奇异等离子子弹

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摘要

Plasma plumes with exotically segmented channel structure and plasma bullet propagation are produced in atmospheric plasma jets. This is achieved by tailoring interruptions of a continuous DC power supply over the time scales of lifetimes of residual electrons produced by the preceding discharge phase. These phenomena are explained by studying the plasma dynamics using nanosecond-precision imaging. One of the plumes is produced using 2 – 10 μs interruptions in the 8 kV DC voltage and features a still bright channel from which a propagating bullet detaches. A shorter interruption of 900 ns produces a plume with the additional long conducting dark channel between the jet nozzle and the bright area. The bullet size, formation dynamics, and propagation speed and distance can be effectively controlled. This may lead to micrometer- and nanosecond-precision delivery of quantized plasma bits, warranted for next-generation health, materials, and device technologies.
机译:在大气等离子流中会产生具有异常分割的通道结构的等离子羽流和等离子子弹传播。这是通过调整连续的直流电源在上一放电阶段产生的剩余电子的寿命时间范围内的中断来实现的。通过使用纳秒精度成像研究等离子体动力学来解释这些现象。其中一根羽状物是在8 kV直流电压中产生2 –10μs的中断而产生的,并具有一个仍然明亮的通道,从中可以分离出正在传播的子弹。较短的900 ns中断会产生羽状流,在喷嘴和亮区之间还会有一条较长的导电暗通道。子弹的大小,地层动力学以及传播速度和距离可以得到有效控制。这可能导致量化的血浆比特的微米级和纳秒级精度的交付,这对于下一代医疗保健,材料和设备技术而言是有保证的。

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