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Effects of delayed Kerr nonlinearity and ionozation on the filamentary ultrashort laser pulses in air

机译:延迟Kerr非线性和电离对空气中丝状超短激光脉冲的影响

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摘要

We present a systematic study of filamentary ultrashort laser pulses in air, through numerical solutions of the nonlinear Schrödinger equation for various contributions of the delayed Kerr nonlinearity. The results show that a relatively larger contribution of the delayed Kerr nonlinearity will lead to a longer stable filament. This is explained from the transfer of the nonlinear contributions from the frontier part to the back of the pulse and the counterbalanced action of the negative plasma induced nonlinearity by the delayed Kerr nonlinearity in the trailing part of the pulses. Furthermore, effect of ionization on the stability of the filament is investigated. Two formulas are used to generate the data of the ionization, i.e., the Perelemov, Popov, and Terent'ev (PPT) and the Ammosov, Delone, and Krainov formula. It is found that simulation with higher ionization rate (PPT) could generate a more stable and longer filament.
机译:我们通过对滞后Kerr非线性的各种贡献的非线性Schrödinger方程的数值解,对空气中的丝状超短激光脉冲进行了系统的研究。结果表明,延迟的Kerr非线性的较大贡献将导致更长的稳定灯丝。这是由于从脉冲的前沿部分到脉冲的背面的非线性贡献的转移,以及由于脉冲后部的延迟Kerr非线性所引起的负等离子体诱导的非线性的抵消作用。此外,研究了电离对灯丝稳定性的影响。使用两个公式生成电离数据,即Perelemov,Popov和Terent'ev(PPT)以及Ammosov,Delone和Krainov公式。结果发现,具有更高电离速率(PPT)的仿真可以生成更稳定,更长的灯丝。

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  • 作者

    Nurhuda M.; Groesen E. van;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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