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High-harmonic generation wave front dependence on a driving infrared wave front

机译:高谐波的波正面依赖于驾驶红外波前

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摘要

With high-harmonic generation (HHG), spatially and temporally coherent XUV to soft x-ray (100 nm to 10 nm) table-top sources can be realized by focusing a driving infrared (IR) laser on a gas target. For applications such as coherent diffraction imaging, holography, plasma diagnostics, or pump-probe experiments, it is desirable to have control over the wave front (WF) of the HHs to maximize the number of XUV photons on target or to tailor the WF. Here, we demonstrate control of the XUV WF by tailoring the driving IR WF with a deformable mirror. The WFs of both IR and XUV beams are monitored with WF sensors. We present a systematic study of the dependence of the aberrations of the HHs on the aberrations of the driving IR laser and explain the observations with propagation simulations. We show that we can control the astigmatism of the HHs by changing the astigmatism of the driving IR laser without compromising the HH generation efficiency with a WF quality from lambda/8 to lambda/13.3. This allows us to shape the XUV beam without changing any XUV optical element. (C) 2020 Optical Society of America
机译:通过将驱动红外(IR)激光聚焦在气体目标上,可以实现具有高谐波产生(HHG)的软X射线(100nm至10nm)的台上源的空间和时间相干的XUV。对于诸如相干衍射成像,全息术,等离子体诊断或泵探针实验的应用,期望对HHS的波前(WF)进行控制,以最大化靶标的XUV光子的数量或定制WF。在这里,我们通过用可变形镜子定制驱动IR WF来证明对XUV WF的控制。使用WF传感器监测IR和XUV梁的WFS。我们对HHS的像差的依赖性进行了系统研究,对驱动红外激光激光器的像差,并解释了与传播模拟的观察结果。我们表明,我们可以通过改变驱动红外激光器的散光来控制HHS的散光,而不会影响来自Lambda / 8至Lambda / 13.3的WF质量的HH生成效率。这允许我们在不改变任何XUV光学元件的情况下塑造XUV光束。 (c)2020美国光学学会

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  • 来源
    《Applied optics》 |2020年第5期|共8页
  • 作者单位

    Inst Super Tecn GoLP Inst Plasmas &

    Fusao Nucl P-1049001 Lisbon Portugal;

    Inst Super Tecn GoLP Inst Plasmas &

    Fusao Nucl P-1049001 Lisbon Portugal;

    KTH Royal Inst Technol AlbaNova Univ Ctr Dept Appl Phys Biomed &

    Xray Phys SE-10691 Stockholm Sweden;

    Inst Super Tecn GoLP Inst Plasmas &

    Fusao Nucl P-1049001 Lisbon Portugal;

    DESY Notkestr 85 D-22607 Hamburg Germany;

    Inst Super Tecn GoLP Inst Plasmas &

    Fusao Nucl P-1049001 Lisbon Portugal;

    Univ Paris Saclay Ecole Polytech ENSTA Paris Tech LOA CNRS 828 Blvd Marechaux F-91120 Palaiseau France;

    DESY Notkestr 85 D-22607 Hamburg Germany;

    Inst Super Tecn GoLP Inst Plasmas &

    Fusao Nucl P-1049001 Lisbon Portugal;

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  • 正文语种 eng
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