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Defocusing role in femtosecond filamentation: Higher-order Kerr effect or plasma effect? 被引量:1
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作者 李苏宇 郭福明 +1 位作者 杨玉军 金明星 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第11期54-58,共5页
The femtosecond filamentation in the classical and high-order Kerr (HOK) models is numerically investigated by adopting multi-photon ionization (MPI) cross section with different values. It is found that in the ca... The femtosecond filamentation in the classical and high-order Kerr (HOK) models is numerically investigated by adopting multi-photon ionization (MPI) cross section with different values. It is found that in the case that the MPI cross section is relatively small, there exists a big difference between the electron density as well as clamped intensity calculated in the classical model and those calculated in the HOK one, while in the case that the MPI cross section is relatively large, the electron density and clamped intensity calculated in the two models are nearly in agreement with each other, and under this circumstance, even if the higher-order nonlinear terms do exist, the free-charge generation and the associated defocusing in a filament are enough to mask their effects. The different behaviors of the maximum intensity and on-axis electron density at the collapse position with the pulse duration provides an approach to determine which effect plays the dominant defocusing role. These results demonstrate that it is ionization that results in the difference between the two models. 展开更多
关键词 high-order kerr model plasma defocusing filamentation
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飞秒激光脉冲在空气中成丝调控研究进展 被引量:1
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作者 聂劲松 胡瑜泽 《国防科技大学学报》 EI CAS CSCD 北大核心 2018年第4期1-8,共8页
在衍射、色散、克尔效应和多光子电离的动态平衡作用下,飞秒激光脉冲能够形成长距离的自引导光丝结构,并且伴随着狭长的等离子体通道。为精确控制超强飞秒激光脉冲在大气中的传输特性,针对飞秒光丝传输模式及光丝光场时空分布的有效调... 在衍射、色散、克尔效应和多光子电离的动态平衡作用下,飞秒激光脉冲能够形成长距离的自引导光丝结构,并且伴随着狭长的等离子体通道。为精确控制超强飞秒激光脉冲在大气中的传输特性,针对飞秒光丝传输模式及光丝光场时空分布的有效调控已成为当前研究热点。在介绍飞秒激光成丝物理模型的基础上,对飞秒激光成丝调控方面的最新进展进行了综述,将光丝调控方式大致归结为两部分:时间调控和空间调控。其中,在空间维度上的调控主要可以分为相位调控、振幅调控以及特殊光场调控。同时指出飞秒激光大气成丝调制能产生众多的新效应,可为促进飞秒光丝实现更多新颖的潜在应用奠定基础。 展开更多
关键词 飞秒激光成丝 光场调控 克尔效应 自聚焦 等离子体散焦 多光子电离 光强钳制效应
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