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Emission spectroscopic measurements and analysis of a pulsed plasma jet

机译:脉冲等离子体射流的发射光谱测量和分析

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An investigation has been conducted of the characteristics of a freely expanding pulsed plasma jet originating from an electrothermal capillary source. The evolution of the plasma jet was investigated using temporally-resolved emission imaging with a gated intensified CCD camera and temporally- and spatially-resolved emission spectroscopy. The emission images reveal a highly underexpanded plasma jet that forms a distinct barrel shock structure, with a highly luminous Mach disk. The jet structure reaches an approximately quasi-steady state about 70 ps after the initiation of the plasma. An analysis of the emission spectra along the jet axis indicates population temperatures in the expanded region, upstream of the Mach disk, to be 2.02 eV (23 400 K) and 1.4 eV (16 200 K), for time delays of 30 /spl mu/s and 70 ps, respectively. At these same time delays, the electron number densities upstream of the Mach disk are of order 10/sup 17/ cm/sup -3/, but increase by an order of magnitude downstream of the Mach disk. Virtually no change is observed in the electron density across the Mach disk at a delay of 120 /spl mu/s, indicating the shock front has largely dissipated.
机译:已经对源自电热毛细管源的自由膨胀的脉冲等离子体射流的特性进行了研究。使用带门控增强CCD相机的时间分辨发射成像以及时间和空间分辨发射光谱学研究了等离子体射流的演变。发射图像揭示了高度膨胀不足的等离子射流,该射流形成了独特的桶形冲击结构,并具有高度发光的马赫盘。等离子体引发后,射流结构达到约70 ps的近似准稳态。沿射流轴的发射光谱分析表明,马赫盘上游扩展区域中的种群温度为2.02 eV(23 400 K)和1.4 eV(16 200 K),延时为30 / spl mu / s和70 ps。在这些相同的时间延迟下,马赫盘上游的电子数密度为10 / sup 17 / cm / sup -3 /,但在马赫盘下游的电子数密度增加了一个数量级。几乎没有观察到以120 / spl mu / s的延迟在整个马赫盘上的电子密度发生变化,这表明冲击波前部已经消散了。

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