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Design, fabrication, and analysis of chirped multilayer mirrors for reflection of extreme-ultraviolet attosecond pulses

机译:multilayer多层反射镜的设计,制造和分析,用于反射极紫外阿秒脉冲

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摘要

Chirped Mo/Si multilayer coatings have been designed, fabricated, and characterized for use in extreme-ultraviolet attosecond experiments. By numerically simulating the reflection of the attosecond pulse from a multilayer mirror during the optimization procedure based on a genetic algorithm, we obtain optimized layer designs. We show that normal incidence chirped multilayer mirrors capable of reflecting pulses of approximately 100 attoseconds (as) duration can be designed by enhancing the reflectivity bandwidth and optimizing the phase-shift behavior. The chirped multilayer coatings have been fabricated by electron-beam evaporation in an ultrahigh vacuum in combination with ion-beam polishing of the interfaces and in situ reflectivity measurement for layer thickness control. To analyze the aperiodic layer structure by hard-x-ray reflectometry, we have developed an automatic fitting procedure that allows us to determine the individual layer thicknesses with an error of less than 0.05 nm. The fabricated chirped mirror may be used for production of 150-160 as pulses. (c) 2006 Optical Society of America.
机译:Mo /钼硅多层涂层已被设计,制造和表征,可用于极紫外阿秒实验。通过基于遗传算法的优化过程,通过数值模拟来自多层反射镜的阿秒脉冲的反射,我们获得了优化的层设计。我们表明,可以通过增强反射率带宽和优化相移行为来设计能够反射大约100阿秒(as)持续时间的脉冲的垂直入射chi多层反射镜。通过在超高真空下进行电子束蒸发,结合界面的离子束抛光和用于层厚控制的原位反射率测量,来制造多层涂层。为了通过硬X射线反射法分析非周期性层的结构,我们开发了一种自动拟合程序,该程序使我们能够确定单个层的厚度,且误差小于0.05 nm。所制造的chi反射镜可用于产生150-160的脉冲。 (c)2006年美国眼镜学会。

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