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Frequency transformation of ultrafast laser pulses in metamaterials

机译:超材料中超快激光脉冲的频率转换

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The nonstationary parametric interaction of waves in negative-index metamaterials is studied in the second-order dispersion theory. A nonlinear interaction between a long pulse of a strong pump wave and an ultrashort pulse with quadratic phase modulation is considered. The results of calculating the shape of the spectrum of an excited signal wave are presented. A comparison is made with the case of interaction in an ordinary medium. It is shown that the effects of group-velocity dispersion and dispersive spreading in such materials lead to a narrowing of the spectrum of the excited wave. The presence of phase modulation of the exciting idler pulse promotes broadening of the central maximum of the spectrum of the excited signal wave. As the modulation factor increases, the fragmentation of the excited pulse is observed.
机译:利用二阶色散理论研究了负折射率超材料中波的非平稳参数相互作用。考虑了强泵浦波的长脉冲和具有二次相位调制的超短脉冲之间的非线性相互作用。给出了计算激发信号波频谱形状的结果。与在普通介质中交互的情况进行比较。结果表明,在这种材料中,群速度色散和色散扩展的影响导致激发波的频谱变窄。激励空转脉冲的相位调制的存在促进了激励信号波频谱的中心最大值的加宽。随着调制因子的增加,观察到激发脉冲的破碎。

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