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Tabletop coherent diffractive microscopy with extreme ultraviolet light from high harmonic generation

机译:桌面相干衍射显微镜,产生高次谐波产生极紫外光

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We demonstrate lensless diffractive microscopy using a tabletop source of extreme ultraviolet (EUV) light from high harmonic generation at 29 nm and 13.5 nm. High harmonic generation has been shown to produce fully spatially coherent EUV light when the conversion process is well phase-matched in a hollow-core waveguide. We use this spatial coherence for two related diffractive imaging techniques which circumvent the need for lossy imaging optics in the EUV region of the spectrum. Holography with a reference beam gives sub-100 nm resolution in short exposure times with fast image retrieval. Application of the Guided Hybrid Input-Output phase retrieval algorithm refines the image resolution to 53 nm with 29 nm light. Initial images using the technologically important 13.5 nm wavelength give 92-nm resolution in a 10-minute exposure. Straightforward extensions of this work should also allow near-wavelength resolution with the 13.5 nm source. Diffractive imaging techniques provide eased alignment and focusing requirements as compared with zone plate or multilayer mirror imaging systems. The short-pulsed nature of the extreme ultraviolet source will allow pump-probe imaging of materials dynamics with time resolutions down to the pulse duration of the EUV.
机译:我们演示了使用来自29 nm和13.5 nm高谐波产生的极紫外(EUV)桌面光源的无透镜衍射显微镜。当中空波导中的转换过程相位匹配良好时,高次谐波产生已显示出可产生完全空间相干的EUV光。我们将这种空间相干性用于两种相关的衍射成像技术,从而避免了在光谱EUV区域中对有损成像光学器件的需求。带有参考光束的全息照相技术在短曝光时间内可提供低于100 nm的分辨率,并且图像检索速度很快。引导式混合输入/输出相位检索算法的应用将29 nm光下的图像分辨率提高到53 nm。使用具有重要技术意义的13.5 nm波长的初始图像在10分钟的曝光时间内可提供92 nm的分辨率。这项工作的直接扩展还应该允许使用13.5 nm光源进行近波长分辨率。与波带片或多层反射镜成像系统相比,衍射成像技术可简化对准和聚焦要求。极紫外光源的短脉冲特性将允许对泵进行动态动态的探头成像,其时间分辨率低至EUV的脉冲持续时间。

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