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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Effects of higher-order nonlinear dispersions on modulational instability in a three-core coupler with negative index material channel and saturable nonlinearity
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Effects of higher-order nonlinear dispersions on modulational instability in a three-core coupler with negative index material channel and saturable nonlinearity

机译:高阶非线性分散对负指数材料通道和可饱和非线性的三芯耦合器中调制不稳定性的影响

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AbstractA theoretical investigation on the impact of high-order nonlinear dispersions of the modulation instability (MI) spectra in the three core triangular oppositely directed coupler with negative index material channel is carried out. A keen attention was paid to find out the influence of self-steepening (SS), intrapulse Raman scattering (TR), second-order nonlinear dispersion (SOND) as well as saturable nonlinearity (SNL) on the MI spectra. Gain spectra has been investigated for both anomalous group velocity dispersion (GVD) and normal GVD regime. Particularly, our results show that in the normal GVD regime, the instability gain exists even if the perturbation frequency (Ω) is zero; and the instability gain atΩ=0 is nil when the dispersion is anomalous. We also find that the magnitude and sign of SOND exert strong influences on MI sideband. Furthermore, by adjusting various parameters such as SS, intrapulse Raman scattering, and SOND, we observe the occurrence of new instability regions. The MI sidelobes, as well as its bandwidth, have also been affected by the SNL. Finally, the SNL may influence considerably the number of wave trains induced by MI. These results can help to understand the generation of soliton-like excitation in nonlinear three-core oppositely directed couplers with a particular attention on a negative-index material channel.]]>
机译:<![cdata [ 抽象 对三个芯三角形相反指导耦合器的调制不稳定性(MI)光谱的高阶非线性分散体的影响的理论研究执行索引材料通道。支付了敏锐的注意,以了解自我陡峭(SS),内腹拉曼散射的影响( t r ),二阶非线性分散(sold)以及Mi光谱上的可饱和非线性(SNL)。已经研究了增益光谱,用于异常群体速度分散(GVD)和正常的GVD制度。特别是,我们的结果表明,在正常的GVD制度中,即使扰动频率(ω)为零,也存在不稳定性增益; ω = 0是nil,当色散异常时。我们还发现,SOND对MI边带产生了强烈影响的幅度和标志。此外,通过调整诸如SS,intapulse拉曼散射和院等各种参数,我们观察到新的不稳定区域的发生。 Mi Sidelobes以及它的带宽也受到SNL的影响。最后,SNL可能会影响MI诱导的波动列车的数量。这些结果可以有助于了解非线性三芯相反指导的耦合器的孤子样激发的孤子状激动的产生,特别是在负指数材料通道上特别注意。 < / ce:摘要>]]>

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