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Bright high-repetition-rate source of narrowband extreme-ultraviolet harmonics beyond 22 eV

机译:超过22 eV的窄带极端紫外线谐波的明亮的高重复频率源

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Novel table-top sources of extreme-ultraviolet light based on high-harmonic generation yield unique insight into the fundamental properties of molecules, nanomaterials or correlated solids, and enable advanced applications in imaging or metrology. Extending high-harmonic generation to high repetition rates portends great experimental benefits, yet efficient extreme-ultraviolet conversion of correspondingly weak driving pulses is challenging. Here, we demonstrate a highly-efficient source of femtosecond extreme-ultraviolet pulses at 50-kHz repetition rate, utilizing the ultraviolet second-harmonic focused tightly into Kr gas. In this cascaded scheme, a photon flux beyond approximate to 3 x 10(13) s(-1) is generated at 22.3 eV, with 5 x 10(-5) conversion efficiency that surpasses similar harmonics directly driven by the fundamental by two orders-of-magnitude. The enhancement arises from both wavelength scaling of the atomic dipole and improved spatio-temporal phase matching, confirmed by simulations. Spectral isolation of a single 72-meV-wide harmonic renders this bright, 50-kHz extreme-ultraviolet source a powerful tool for ultrafast photoemission, nanoscale imaging and other applications.
机译:基于高谐波产生的新型台式紫外线光源可提供对分子,纳米材料或相关固体的基本特性的独特见解,并能够在成像或计量学中进行高级应用。将高谐波产生扩展到高重复率预示着巨大的实验优势,但是对相应弱的驱动脉冲进行有效的极紫外转换却具有挑战性。在这里,我们展示了一个高效的飞秒极端紫外脉冲源,其重复频率为50 kHz,它利用紧密聚焦在Kr气体中的紫外线二次谐波。在这种级联方案中,在22.3 eV处产生的光子通量超过约3 x 10(13)s(-1),转换效率为5 x 10(-5),超过了由基波直接驱动的相似谐波的两个数量级量级。仿真结果证实,增强既来自原子偶极子的波长缩放,也来自时空相位匹配的改善。单个72meV宽谐波的频谱隔离使该明亮的50kHz极紫外光源成为用于超快光发射,纳米级成像和其他应用的强大工具。

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