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Wave Processes in Moderately and Strongly Nonlinear and Active Hyperbolic Metamaterials and Potential Applications

机译:中度和强型非线性和主动双曲超材料和潜在应用的波程

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Two approaches to the moderately and strongly nonlinear active planar hyperbolic metamaterials, with and without an averaging over a unit cell are applied. For the proper sign of the nonlinearity of the layers included into the elementary cell of the metamaterial, the hotspots can be formed in IR range. Hypothetically, the hot spot formation is a rather common feature of the strongly nonlinear media with the interfaces between linear and nonlinear layers. The new evolution equations for the envelope amplitude of the nonlinear wave packets propagating in active hyperbolic media under an arbitrary angle to the optical axis are derived in the parabolic approximation. The mixed derivative in the evolution equation disappears and the equations reduce to the Nonlinear Schrodinger Equation (NSE) form for the waves propagating along an optical axis. The nonlinear quantum optics approach to the waves in hyperbolic active metamaterials is outlined.
机译:应用了适度和强烈的非线性有源平面双曲线材料的两种方法,具有和不在单位单元上的平均值。对于包括在超材料的基本单元中的层的非线性的正确符号,热点可以在IR范围内形成。假设,热点形成是具有线性和非线性层之间的界面的强非线性介质的相当常见的特征。在抛物线近似下导出在与光轴的任意角度下传播的非线性波分组的包络幅度的新进化方程衍生在抛物面近似。进化方程中的混合导数消失,并且等式减少到沿光轴传播的波的非线性薛定林方程(NSE)形式。概述了双曲线有源超材料中波浪的非线性量子光学方法。

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