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High-order nonlinear optical processes in ablated carbon-containing materials: Recent approaches in development of the nonlinear spectroscopy using harmonic generation in the extreme ultraviolet range

机译:含烧成碳材料中的高阶非线性光学方法:最近在极端紫外线范围内使用谐波产生的非线性光谱的开发方法

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摘要

The nonlinear spectroscopy using harmonic generation in the extreme ultraviolet range became a versatile tool for the analysis of the optical, structural and morphological properties of matter. The carbon-contained materials have shown the advanced properties among other studied species, which allowed both the definition of the role of structural properties on the nonlinear optical response and the analysis of the fundamental features of carbon as the attractive material for generation of coherent short-wavelength radiation. We review the studies of the high-order harmonic generation by focusing ultrashort pulses into the plasmas produced during laser ablation of various organic compounds. We discuss the role of ionic transitions of ablated carbon-containing molecules on the harmonic yield. We also show the similarities and distinctions of the harmonic and plasma spectra of organic compounds and graphite. We discuss the studies of the generation of harmonics up to the 27th order (lambda = 29.9 nm) of 806 nm radiation in the boron carbide plasma and analyze the advantages and disadvantages of this target compared with the ingredients comprising B4C (solid boron and graphite) by comparing plasma emission and harmonic spectra from three species. We also show that the coincidence of harmonic and plasma emission wavelengths in most cases does not cause the enhancement or decrease of the conversion efficiency of this harmonic.
机译:使用极端紫外线谐波中使用谐波产生的非线性光谱成为用于分析物质的光学,结构和形态学性质的多功能工具。碳含量的材料已经示出了其他研究中的先进性质,其允许结构性质的作用定义在非线性光学响应上以及分析碳的基本特征作为含有相干性的有吸引力的材料的含有吸引力的材料波长辐射。我们通过将超短脉冲聚焦到各种有机化合物的激光消融期间产生的等离子体来审查高阶谐波产生的研究。我们讨论了离子转变对烧结碳分子的作用对谐波产率。我们还展示了有机化合物和石墨谐波和血浆光谱的相似性和区分。我们讨论了碳化硼等离子体中的806nm辐射的第27阶(Lambda = 29.9nm)的谐波的产生,并与包含B4C(固体硼和石墨)的成分相比分析该靶的优点和缺点通过比较三种血浆发射和谐波光谱。我们还表明,在大多数情况下,谐波和等离子体发射波长的巧合不会导致这种谐波的转换效率的增强或降低。

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  • 来源
    《Optics and Spectroscopy》 |2017年第2期|共15页
  • 作者

    Ganeev R. A.;

  • 作者单位

    Saitama Med Univ Ophthalmol &

    Adv Laser Med Ctr Saitama 3500495 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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