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Stabilization of liquified-inert-gas jets for laser-plasma generation

机译:用于激光等离子体生成的液化惰性气体射流的稳定化

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摘要

We investigate the hydrodynamic properties of liquified-inert-gas jets in a vacuum with a special emphasis on their stability. Such jets have applications as targets for laser-plasma generation of soft-x-ray and extreme-ultraviolet (EUV) radiation. An important example is the liquid-xenon-jet laser-plasma source, one of the source candidates for EUV lithography. A simple hydrodynamic model in not sufficient to explain experimental observations of jet stability. Evaporation-induced cooling explains observed in-flight freezing of the jet and may be a key factor influencing jet stability. It is shown how the jet stability, and, thus, the stability of the laser-plasma x-ray and EUV emission, are improved by applying localized heating to the tip of the jet-generating nozzle.
机译:我们研究了真空中液化惰性气体射流的流体动力学特性,特别强调其稳定性。这种射流可用作激光等离子体产生软X射线和极紫外(EUV)辐射的目标。一个重要的例子是液态氙气射流激光等离子体源,它是EUV光刻的候选源之一。一个简单的流体动力学模型不足以解释射流稳定性的实验观察结果。蒸发引起的冷却解释了观察到的射流在飞行中的冻结,并且可能是影响射流稳定性的关键因素。图中显示了如何通过对喷射喷嘴的尖端施加局部加热来改善射流稳定性,从而提高激光等离子体X射线和EUV发射的稳定性。

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