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On the excitation temperature of pulsed plasma produced from washer plasma gun in a compact plasma system

机译:在紧凑型等离子体系统中从垫圈等离子体产生的脉冲等离子体激励温度

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摘要

The washer plasma gun is widely used to produce pulsed plasma and has various applications in plasma physics. A washer plasma gun and a Guillemin-E type pulse forming network are designed and fabricated in the laboratory to produce pulsed argon plasma in the Compact Plasma System. The spectroscopic signals of pulsed plasma are taken through toughened float glass at a distance of about 0.3 m from the plasma gun by a USB4000 digital spectrometer. Assuming the gun plasma is in Local Thermodynamic Equilibrium, Boltzmann plot method and the line ratio method are used to measure the excitation/electron temperature of pulsed plasma with different base pressure varying from 0.2 mbar to 1 mbar. The excitation/electron temperature of the plasma increases slightly with increasing base pressure within the range of 0.2 mbar to 0.8 mbar and then decreases slightly at a pressure of 1 mbar. Both methods produce almost similar results in temperature measurement, but the Boltzmann Plot method is most accurate than line ratio method and widely used method to obtain the excitation/electron temperature of plasma in Local Thermodynamic equilibrium condition.
机译:垫圈等离子体枪广泛用于生产脉冲等离子体,并在等离子体物理中具有各种应用。在实验室中设计并制造了垫圈等离子体枪和泛素内-E型脉冲形成网络,以在紧凑的等离子体系统中产生脉冲氩等离子体。脉冲等离子体的光谱信号通过USB4000数字光谱仪从等离子体枪的距离在约0.3μm的距离中取出。假设枪等离子体处于局部热力学平衡,Boltzmann图方法和线路比率方法用于测量脉冲等离子体的激励/电子温度,其不同的基础压力从0.2毫巴到1毫巴变化。等离子体的激发/电子温度随着0.2毫巴的范围内的增加而略微增加,然后在0.8毫巴的范围内,然后在1毫巴的压力下略微降低。两种方法在温度测量中产生几乎相似的结果,但Boltzmann图方法最精确比线比法和广泛使用的方法在局部热力学平衡条件下获得等离子体的激发/电子温度。

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