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Generation of Coherent sub-20 nm XUV Radiation at 78 MHz via Cavity-Based HHG

机译:通过基于腔的HHG在78 MHz处产生20 nm以下的相干XUV辐射

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We present two major advances of enhancement-cavity-based high-order harmonic generation (HHG). First, the generated extreme ultraviolet (XUV) radiation is coupled out collinearly through an on-axis opening in the mirror following the HHG focus. This minimizes the interaction of both the fundamental and the intracavity generated ra diation with the output coupler while simultaneously enabling a large enhancement and an output coupling efficiency that increases with the harmonic order. Second, we use the nonlinearly compressed pulses of an Yb-based laser to drive intracavity HHG allowing for a unique power regime combining short pulses with high average powers. Together, these advances overcome fundamental limitations of current enhancement cavity setups and extend intracavity HHG towards higher photon energies. In a proof-of-principle experiment we use a 3-kW and 78-MHz train of 54-fs to generate and couple out coherent sub-20 nm radiation.
机译:我们介绍了基于增强腔的高次谐波产生(HHG)的两个主要进展。首先,产生的极紫外(XUV)辐射通过跟随HHG焦点的反射镜中的同轴开口共线耦合。这最小化了基波和腔内辐射与输出耦合器的相互作用,同时实现了大幅增强,并且输出耦合效率随谐波次数增加。其次,我们使用基于Yb的激光器的非线性压缩脉冲来驱动腔内HHG,从而实现结合短脉冲和高平均功率的独特功率范围。总之,这些进步克服了当前增强腔设置的基本限制,并将腔内HHG扩展为更高的光子能量。在原理验证实验中,我们使用3 kW和78-MHz的54-fs列来生成和耦合相干的20 nm以下辐射。

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