Nonlinear Surface Polaritons near the Interface between a Magneto-Optical Substance and a Nonlinear Metamaterial with a Permittivity Close to Zero

Andriy Groza, N. Siddelev
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Abstract

Relevance. Considerable attention of researchers is drawn to nonlinear surface optical waves, as they are promising for application in optical information processing systems, ultra-sensitive sensors, and modern telecommunications components. Purpose. To obtain an exact solution of the Maxwell equation system for TM-polarised nonlinear surface polaritons propagating along the interface between an optically linear magnetic medium and an optically nonlinear medium with saturated nonlinearity. Methods. Analysis of the properties of nonlinear surface polaritons (NSP) and mathematical modelling of the dependence of the permittivity of a nonlinear medium on the intensity are used. Results. TM-polarised nanoparticles propagating along the interface of a magneto-optical medium and a nonlinear optical metamaterial with a permittivity close to zero (ENZ-metamaterial) are studied. For NSP in such a structure, an exact solution of the Maxwell equation system is obtained, considering the saturation effect of optical nonlinearity. On this basis, the dependences of constant propagation on the total energy flux of NSP and energy fluxes in contact media in the structure were investigated: magneto-optical ENZ-metamaterial with negative permittivity/nonlinear self-focusing ENZ-metamaterial. Conclusions. The NSP energy flow is positive in a nonlinear medium and negative in a linear one. As the saturation level decreases, the NSP energy fluxes in the contacting media increase modulo, if the value of the NSP propagation constant (NSPPC) is fixed. The lowest NSPPC value for guiding nonlinearity is obtained when the total energy flow of the NSP becomes zero. As the saturation level decreases, the NSP propagation variable (NSPPV) increases. At a fixed NSPPC, with a decrease in the magnetic permeability, the energy fluxes of NSP in the contacting media increase. When the magnetic permeability decreases to zero and the NSP energy flux is positive, the NSPPV change range narrows
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磁光物质与介电常数接近于零的非线性超材料界面附近的非线性表面极化子
的相关性。非线性表面光波在光信息处理系统、超灵敏传感器和现代通信器件等方面具有广阔的应用前景,引起了研究人员的广泛关注。得到沿光线性磁介质与具有饱和非线性的光非线性介质界面传播的tm极化非线性表面极化子的Maxwell方程组的精确解。分析了非线性表面极化子(NSP)的性质,建立了非线性介质介电常数随强度变化的数学模型。研究了沿磁光介质和介电常数接近于零的非线性光学超材料(enz -超材料)界面传播的tm极化纳米粒子。对于这种结构中的NSP,考虑光学非线性的饱和效应,得到了麦克斯韦方程组的精确解。在此基础上,研究了具有负介电常数的磁光enz -超材料/非线性自聚焦enz -超材料结构中恒定传播对NSP总能量通量和接触介质能量通量的依赖关系。NSP能量流在非线性介质中为正,在线性介质中为负。当NSP传播常数(NSPPC)一定时,随着饱和水平的降低,接触介质中的NSP能量通量呈模增长。当NSP总能量流为零时,可获得引导非线性的最低NSPPC值。随着饱和水平的降低,NSP传播变量(NSPPV)增大。在一定的NSPPC下,随着磁导率的降低,NSP在接触介质中的能量通量增加。当磁导率降至零且NSP能量通量为正时,NSPPV变化范围变窄
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