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Characterization of Exploding Film Plasmas Using Emission Spectroscopy

机译:利用发射光谱分解薄膜等离子体的特征

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Exploding films have a variety of potential applications including current interrupters, ignition of energetic materials, and sources of intense light. However, characterization of these events remains a challenge as the average duration of an event is only on the order of 100 μs in our studies. An effort to obtain a complete understanding of the exploding film and plasma generation phenomena is underway. This paper investigates the spectral and electrical output of exploding film events on metallized polypropylene film samples. Assuming the plasma generated from the exploding film is a blackbody radiator, peak temperature can be estimated using trends of wavelength versus intensity. This data allows for a more accurate characterization of the plasma that results from the exploding films. A holistic understanding of the deterministic mechanisms of the plasma enables future controllability and tunability in exploding film applications.
机译:爆炸薄膜具有各种潜在的应用,包括当前的中断器,点燃能量材料和强烈的光源。然而,随着事件的平均持续时间仅在我们的研究中仅为100μs的顺序,这些事件的表征仍然是挑战。正在努力获得完全理解爆炸膜和等离子体生成现象正在进行中。本文研究了金属化聚丙烯薄膜样品上爆炸膜事件的光谱和电输出。假设从爆炸膜产生的等离子体是黑体散热器,可以使用波长与强度的趋势估计峰值温度。该数据允许更准确地表征来自爆炸膜的等离子体。对等离子体的确定性机制的整体理解能够在爆炸薄膜应用中实现未来的可控性和可调性。

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