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Dynamics of high-repetition-rate laser plasma extreme ultraviolet sources from droplet targets

机译:从液滴靶的高重复速率激光等离子体极端紫外源的动态

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As a mass limited target the water droplet laser plasma source has been shown to have many attractive features as a continuous, almost debris-free source for extreme ultraviolet (EUV) and X-ray applications. Through a dual experimental and theoretical study, we analyze the interaction physics between the laser light and the target. The hydrodynamic laser plasma simulation code, Medusa 103 is used to model the electron density distribution for comparison to electron density distributions obtained through Abel inversion of plasma interferograms. In addition, flat field EUV spectra are compared to synthetic spectra calculated with the atomic physics code RATION.
机译:由于质量有限的靶标,水滴激光等离子体源已被证明具有许多有吸引力的特征作为极端紫外(EUV)和X射线应用的连续,几乎无碎屑源。通过双重实验和理论研究,我们分析了激光和目标之间的相互作用物理学。流体动力激光等离子体仿真码,Medusa 103用于模拟电子密度分布,以便与通过厌氧逆转器获得的电子密度分布进行比较。此外,将平坦的EUV光谱与用原子物理码码进行计算的合成光谱进行比较。

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