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Bright Coherent Ultrafast Tabletop Light Sources Development and the Application on EUV to Soft X-Ray Absorption Spectroscopy.

机译:明亮相干超快速桌面光源的开发以及EUV在软X射线吸收光谱学中的应用。

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摘要

The generation of the advanced bright coherent ultrafast light source from ultraviolet (UV) to soft X-ray have been pursued for decades. It requires the development of light conversion technique, such as high-order harmonics generation (HHG), as well as the driving laser. In this thesis, we first demonstrate the highest pulse energy (10 mJ), single-stage, ultrafast (45 fs) Ti:sapphire amplifier to date, with a repetition rate of 1 kHz. We then use this laser to pump an optical parametric amplifier system and generate 1.3 microm, 30 fs pulses with sufficient energy (2 mJ) for optimally-efficient, phase matched HHG conversion. This allows us to demonstrate the highest flux, soft X-ray HHG source to date with > 106 photons/pulse/1% bandwidth at 1 kHz (corresponding to > 109 photons/s/1% bandwidth) in a broadband, continuum, spectrum extending to 200 eV, through the fully phase matched hollow waveguide geometry HHG. This photon flux represents an approximately 3 orders-of-magnitude increase compared with past work. Meanwhile, due to the experimental similarity, the high energy ultrashort (10 fs) UV source is implemented in parallel to the soft X-ray source by the four wave mixing (FWM) process. The pulse energy (32 microJ) of UV source is increased by more than 3 times compared with past work, with the pulse duration compressible to less than 13 fs. Finally, utilizing the unique bright supercontinuum HHG soft X-ray source, we have demonstrated soft X-ray absorption spectroscopy of multiple elements and transitions in molecules simultaneously, with the ability to resolve near edge fine structure with high fidelity. The Xeon photon-ionization process is also resolved in the EUV transient absorption spectroscopy experiment by tuning the soft X-ray source to the EUV region, which shows the stability, tunability, and applicability of our tabletop extreme nonlinear light source for the time-resolved experiments.
机译:从紫外线(UV)到柔和的X射线,人们一直在追求先进的明亮相干超快光源的产生,这一过程已经进行了数十年。它需要开发光转换技术,例如高次谐波产生(HHG)以及驱动激光器。在本文中,我们首先展示了迄今为止最高的脉冲能量(10 mJ),单级,超快(45 fs)的Ti:蓝宝石放大器,其重复频率为1 kHz。然后,我们使用此激光器泵浦光学参量放大器系统,并产生1.3微米,30 fs的脉冲,并具有足够的能量(2 mJ),以实现最佳效率的相位匹配HHG转换。这使我们能够展示迄今为止宽带,连续谱,频谱中最高通量的软X射线HHG源,其在1 kHz时具有> 106光子/脉冲/ 1%带宽(相当于> 109光子/ s / 1%带宽)通过完全相匹配的中空波导几何体HHG扩展到200 eV。与过去的工作相比,该光子通量表示增加了大约3个数量级。同时,由于实验上的相似性,通过四波混频(FWM)工艺将高能超短(10 fs)紫外光源与软X射线源并行实现。与过去的工作相比,UV源的脉冲能量(32 microJ)增加了3倍以上,脉冲持续时间可压缩到小于13 fs。最后,我们利用独特的明亮的超连续谱HHG软X射线源,展示了多个元素同时在分子中过渡的软X射线吸收光谱,并具有高保真度分辨近边缘精细结构的能力。通过将软X射线源调整到EUV区域,在EUV瞬态吸收光谱实验中也解决了Xeon光子电离过程,这显示了我们桌上型极端非线性光源在时间分辨上的稳定性,可调性和适用性实验。

著录项

  • 作者

    Ding, Chengyuan.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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