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Time-resolved study of third harmonic generation from anisotropically expanding clusters.

机译:各向异性扩展星团产生三次谐波的时间分辨研究。

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摘要

Time-resolved Third Harmonic Generation (THG) from expanding argon gas clusters has been studied. A 400 nm pump (Ipump ∼ 1 x 1015 W/cm2) beam ionizes a gas jet composed of atomic clusters and residual gases. An 800 nm, 100 fs probe then generates third harmonic radiation from expanding clusters with controlled delays. The measured THG is sharply peaked at earlier delays than broad absorption resonances. Simulations show that the nonlinear susceptibility chi(3) of the individual clusters and the THG coherence length of the clustered plasma medium are optimized nearly simultaneously as the pre-heated clusters expand, and both contribute to the observed THG enhancement.;We also measured THG anisotropy from expanding clusters. When resonantly enhanced, THG becomes temporarily anisotropic---i.e. a probe polarized perpendicular to the pump generates third-harmonic more efficiently than one polarized parallel---thereby characterizing the anisotropy of cluster expansion. By contrast, the linear optical response was isotropic.;The physical mechanisms contributing to enhanced THG are scalable to relativistic probe intensity (limited only by pre-pulses in the laser system) and to high-order harmonic generation extending to the soft x-ray regime.
机译:已经研究了来自扩展的氩气团簇的时间分辨第三谐波产生(THG)。 400 nm泵浦(Ipump〜1 x 1015 W / cm2)的光束使由原子团簇和残留气体组成的气体喷流电离。然后,一个800 nm,100 fs的探头从受控延迟的扩展簇中产生三次谐波辐射。与较宽的吸收共振相比,测得的THG在更早的延迟处急剧达到峰值。仿真表明,随着预热团簇的扩展,各个团簇的非线性磁化率chi(3)和团簇等离子体介质的THG相干长度几乎同时得到优化,并且都有助于观测到的THG增强。扩展簇的各向异性。当共振增强时,THG暂时变为各向异性-即垂直于泵偏振的探头比平行偏振的探头更有效地产生三次谐波,从而表征了团簇膨胀的各向异性。相比之下,线性光学响应是各向同性的;有助于THG增强的物理机制可扩展到相对论探针强度(仅受激光系统中的预脉冲限制)和扩展到软X射线的高次谐波生成政权。

著录项

  • 作者

    Shim, Bonggu.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Physics Atomic.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 132 p.
  • 总页数 132
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;光学;
  • 关键词

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