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Optics-less focusing of XUV high-order harmonics

机译:XUV高次谐波的无光学聚焦

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By experimentally studying high-order harmonic beams generated in gases, we show how the spatial characteristics of these ultrashort extreme-ultraviolet (XUV) beams can be finely controlled when a single fundamental beam generates harmonics in a thin gas medium. We demonstrate that these XUV beams can be emitted as converging beams and thereby get focused after generation. We study this optics-less focusing using a spatially chirped beam that acts as a probe located inside the harmonic generation medium. We analyze the XUV beam evolution with an analytical model and obtain very good agreement with experimental measurements. The XUV foci sizes and positions vary strongly with the harmonic order, and the XUV waist can be located at arbitrarily large distances from the generating medium. We discuss how intense XUV fields can be obtained with optics-less focusing and how the order-dependent XUV beam characteristics are compatible with broadband XUV irradiation and attosecond science.
机译:通过实验研究气体中产生的高次谐波束,我们展示了当单个基本束在稀薄的气体介质中产生谐波时,如何精细控制这些超短极紫外(XUV)束的空间特性。我们证明了这些XUV光束可以作为会聚光束发射,从而在生成后聚焦。我们使用空间chi光束研究这种无光学元件的聚焦,该光束在谐波产生介质内部充当探针。我们用分析模型分析了XUV光束的演变,并与实验测量获得了很好的一致性。 XUV焦点的大小和位置随谐波次数变化很大,并且XUV腰部可以距生成介质任意大的距离。我们讨论了无光学聚焦如何获得强XUV场,以及与阶次相关的XUV光束特性如何与宽带XUV照射和阿秒科学兼容。

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