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Investigation of the XUV Emission from the Interaction of Intense Femtosecond Laser Pulses with Solid Targets

机译:强飞秒激光脉冲与固体靶相互作用对XUV发射的研究

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摘要

The generation of coherent high-order harmonics from the interaction of ultra-intense femtosecond laser pulses with solid density plasmas holds the promise for table-top sources of intense extreme ultraviolet (XUV) and soft x-ray (SXR) radiation. Furthermore, they give rise to the prospect of combining the attosecond pulse duration of conventional gas-harmonic sources with the photon flux currently only available from large-scale free-electronlaser or synchrotron facilities.In this thesis a series of experiments studying various aspects of harmonic generation from such a plasma source are presented and the emitted XUV-radiation is characterizedspectrally, spatially and temporally. The measurements probe the dynamics of the plasma surface on a sub-laser-cycle time scale and help to increase our understanding of the harmonic generation process. It is shown that, at moderate intensities and laser contrast,the emitted harmonics are indeed phase-locked but chirped and emitted as a train of XUV-bursts of attosecond duration. Measurements with very high contrast relativistically intense driving pulses reveal the generation of harmonics up to the relativistic cutoff ina diffraction-limited beam with constant divergence observed for all wavelength. This implies that the harmonics are generated on a curved surface and travel through a focus after the target possibly opening a route towards extreme intensities in the process. In addition it is found that a target roughness on the scale of the wavelength of the highest generated harmonic does not adversely affect the harmonic beam quality implying thatthe generation of diffraction-limited keV-harmonic beams should be possible. In a third set of experiments the first demonstration of harmonic generation from solid targets using an 8 fs driving laser opens a route towards the generation of ultra-intense single-as pulses and gives conclusive evidence for the unequal spacing of the harmonic emission.Based on these results the development of ultra-intense sources of single as-pulses from the interaction of intense laser pulses with solid surfaces could advance at a fast pace making XUV-pump XUV-probe type investigations of nonlinear processes with attosecond time resolution feasible in the near future.
机译:超强飞秒激光脉冲与固体密度等离子体相互作用产生相干的高次谐波,为台式强紫外线(XUV)和软X射线(SXR)辐射源提供了希望。此外,它们还提出了将常规气体谐波源的阿秒脉冲持续时间与目前只能从大型自由电子激光或同步加速器设施中获得的光子通量相结合的前景。本文研究了一系列研究谐波各方面的实验提出了从这种等离子体源产生的X射线,并对发射的XUV辐射进行了光谱,空间和时间上的表征。这些测量以亚激光周期的时间尺度探测等离子体表面的动力学,并有助于加深我们对谐波产生过程的理解。结果表明,在中等强度和激光对比度下,所发出的谐波确实是锁相的,但as声并以一秒级的XUV爆发序列发出。在具有很高对比度的相对论强度强烈的驱动脉冲下进行的测量表明,在衍射极限光束中,直到相对论截止为止,在所有波长下均观察到恒定发散的谐波产生。这意味着谐波会在曲面上生成,并在目标可能会在此过程中通向极端强度的路线之后经过焦点传播。另外还发现,在产生的最高谐波的波长范围内的目标粗糙度不会对谐波光束质量产生不利影响,这意味着应该可以产生衍射极限的keV谐波光束。在第三组实验中,首次展示了使用8 fs驱动激光器从固体目标产生谐波的可能性,这开辟了一条通往产生超强单脉冲的途径,并为谐波发射间距不均等提供了确凿的证据。这些结果表明,由强激光脉冲与固体表面相互作用产生的单个as脉冲超强光源的发展可能会迅速发展,这使得XUV-pump XUV-probe型非线性过程的研究在十亿分之一秒的时间分辨率下在不久的将来变得可行。未来。

著录项

  • 作者

    Hörlein Rainer;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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