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Spatial Nonlinearity in Anisotropic Metamaterial Plasmonic Slot Waveguides

机译:各向异性超材料刻度槽波导的空间非线性

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We study the main nonlinear solutions of plasmonic slot waveguides made from an anisotropic metamaterial core with a positive Kerr-type nonlinearity surrounded by two semi-infinite metal regions. First, we demonstrate that for a highly anisotropic diagonal elliptical core, the bifurcation threshold of the asymmetric mode is reduced from the GW/m level for the isotropic case to 50 MW/m level indicating a strong enhancement of the spatial nonlinear effects. In addition, the slope of the dispersion curve for the asymmetric mode remains positive, at least near the bifurcation, suggesting a stable mode. Second, we show that for the hyperbolic case, there is no physically meaningful asymmetric mode, and that the sign of the effective nonlinearity can become negative.
机译:我们研究了由两个半无限金属区域围绕的正kerr型非线性由各向异性超材料芯制成的等离子石超材料芯制成的主要非线性解。 首先,我们证明对于高度各向异性对角线椭圆芯,非对称模式的分叉阈值从用于各向同性情况的GW / M水平降低到50mW / m水平,指示空间非线性效应的强大增强。 另外,用于不对称模式的分散曲线的斜率保持阳性,至少在分叉附近,建议稳定模式。 其次,我们表明对于双曲线,没有物理上有意义的不对称模式,有效非线性的迹象可能变为负。

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