Plasmonic modes at inclined edges of anisotropic two-dimensional materials

A. A. Sokolik, O. Kotov, Y. Lozovik
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引用次数: 5

Abstract

Confined modes at the edge arbitrarily inclined with respect to optical axes of nonmagnetic anisotropic 2D materials are considered. By developing the exact Wiener-Hopf and approximated Fetter methods we studied edge modes dispersions, field and charge density distributions. The 2D layer is described by the Lorentz-type conductivities in one or both directions, which is realistic for natural anisotropic 2D materials and resonant hyperbolic metasurfaces. We demonstrate that, due to anisotropy, the edge mode exists only at wave vectors exceeding the nonzero threshold value if the edge is tilted with respect to the direction of the resonant conductivity. The dominating contribution to field and charge density spatial profiles is provided by evanescent 2D waves, which are confined both in space near the 2D layer and along the layer near its edge. The degree of field confinement along the layer is determined by wave vector or frequency mismatch between the edge mode and continuum of freely propagating 2D modes. Our analysis is suitable for various types of polaritons (plasmon-, phonon-, exciton-polaritons etc.) at large enough wave vectors. Thanks to superior field confinement in all directions perpendicular to the edge these modes look promising for modern plasmonics and sensorics.
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各向异性二维材料倾斜边缘的等离子体模式
研究了非磁性各向异性二维材料的光轴任意倾斜边缘处的受限模。通过发展精确的Wiener-Hopf和近似的Fetter方法,我们研究了边缘模色散、场和电荷密度分布。二维层是用一个或两个方向的洛伦兹型电导率来描述的,这对于自然各向异性二维材料和共振双曲超表面是现实的。我们证明,由于各向异性,如果边缘相对于共振电导率的方向倾斜,则边缘模式仅存在于超过非零阈值的波矢量上。对电场和电荷密度空间分布的主要贡献是由消失的二维波提供的,这些波既局限在二维层附近的空间中,也局限在其边缘附近的层上。沿层的场约束程度取决于边缘模式与自由传播的二维模式连续体之间的波矢量或频率不匹配。我们的分析适用于各种类型的极化子(等离子激元,声子,激子等)在足够大的波矢量。由于在垂直于边缘的所有方向上都有优越的场约束,这些模式看起来很有希望用于现代等离子体和传感器。
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