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Spatiotemporal instability in a periodic structure consisting of negative-index and positive-index materials

机译:周期性结构的时空不稳定性由负指数和正指数材料组成

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In this paper, we apply the conventional method of linear stability to investigate the dynamical behaviors of spatiotemporal instability in a periodic structure consisting of negative-index materials and positive-index materials. It is found that the high-order diffraction (HOD) originating from spatial dispersion in such physical setting not only leads to the appearance of new instability regimes, but also may exert significant influence on the original instability, depending on the combined signs of both diffraction and dispersion. In the conventional positive diffraction regime, the most notable property is that HOD shrinks the regime of the original instability for the normal dispersion case through suppressing the higher frequency components growth while it leads to the appearance of new instability regimes in addition to deforming the original instability for the anomalous dispersion case. However, in the negative diffraction regime, HOD may lead to the occurrence of spatiotemporal instability even for the normal dispersion case while it mainly shrinks the regimes of the original instability for the anomalous dispersion case.
机译:在本文中,我们应用了线性稳定性的传统方法,以研究由负指数材料和正指数材料组成的周期性结构中时尚不稳定性的动态行为。结果发现,在这种物理环境中起始的高阶衍射(HOD)不仅导致新的不稳定性制度的外观,而且可能对原始不稳定产生重大影响,这取决于衍射的组合标志和分散。在传统的正衍射方案中,最值得的特性是HOD通过抑制更高频率的分量的增长而导致新的不稳定性制度之外的外观来缩小正常色散箱的原始不稳定性的制度,除了使原始不稳定性变形外对于异常的分散情况。然而,在负衍射制度中,即使对于正常的分散情况,HOD也可能导致时尚不稳定性的发生,同时它主要缩小原始不稳定性对于异常的分散情况。

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