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Wavelength dependence of nanosecond infrared laser-induced breakdown in water: Evidence for multiphoton initiation via an intermediate state

机译:纳秒红外激光在水中击穿的波长依赖性:通过中间态引发多光子的证据

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摘要

Investigation of the wavelength dependence (725-1025 nm) of the threshold for nanosecond optical breakdown in water revealed steps consistent with breakdown initiation by multiphoton ionization, with an initiation energy of about 6.6 eV. This value is considerably smaller than the autoionization threshold of about 9.5 eV, which can be regarded as band gap relevant for avalanche ionization. Breakdown initiation is likely to occur via excitation of a valence band electron into a solvated state, followed by rapid excitation into the conduction band. Theoretical analysis based on these assumptions suggests that the seed electron density required for initiating avalanche ionization amounts to 2.5 × 10~(15) cm~(-3) at 725 nm and drops to 1.1 × 10~(12) cm~(-3) at 1025 nm. These results demand changes of future breakdown modeling for water, including the use of a larger band gap than previously employed, the introduction of an intermediate energy level for initiation, and consideration of the wavelength dependence of seed electron density.
机译:对水中纳秒级光学击穿阈值的波长依赖性(725-1025 nm)的研究揭示了与多光子电离的击穿引发相一致的步骤,其引发能量约为6.6 eV。该值大大小于约9.5 eV的自电离阈值,该阈值可被视为与雪崩电离有关的带隙。击穿引发很可能是通过将价带电子激发到溶剂化状态,然后迅速激发到导带中而发生的。基于这些假设的理论分析表明,在725 nm处引发雪崩电离所需的种子电子密度为2.5×10〜(15)cm〜(-3),下降至1.1×10〜(12)cm〜(-3)。 )在1025 nm。这些结果要求改变水的未来击穿模型,包括使用比以前更大的带隙,引入中间能级进行引发,以及考虑种子电子密度的波长依赖性。

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  • 来源
    《Physical review》 |2015年第13期|134114.1-134114.10|共10页
  • 作者单位

    Institut fuer Biomedizinische Optik, Universitaet zu Luebeck, Peter-Monnik Weg 4, 23562 Luebeck, Germany;

    Institut fuer Biomedizinische Optik, Universitaet zu Luebeck, Peter-Monnik Weg 4, 23562 Luebeck, Germany;

    Institut fuer Biomedizinische Optik, Universitaet zu Luebeck, Peter-Monnik Weg 4, 23562 Luebeck, Germany;

    Institut fuer Meteorologie und Klimaforschung, Forschungszentrum Karlsruhe, Kreuzeckbahnstr 19, 82467 Garmisch-Partenkirchen, Germany;

    Institut fuer Meteorologie und Klimaforschung, Forschungszentrum Karlsruhe, Kreuzeckbahnstr 19, 82467 Garmisch-Partenkirchen, Germany;

    Institut fuer Biomedizinische Optik, Universitaet zu Luebeck, Peter-Monnik Weg 4, 23562 Luebeck, Germany;

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  • 关键词

    laser-beam impact phenomena; laser spectroscopy; biological and medical applications;

    机译:激光束冲击现象;激光光谱生物和医学应用;

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