首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Directive Surface Plasmons on Tunable Two-Dimensional Hyperbolic Metasurfaces and Black Phosphorus: Green’s Function and Complex Plane Analysis
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Directive Surface Plasmons on Tunable Two-Dimensional Hyperbolic Metasurfaces and Black Phosphorus: Green’s Function and Complex Plane Analysis

机译:可调二维双曲线超表面和黑色磷上的定向表面等离激元:格林函数和复杂平面分析

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We study the electromagnetic response of two- and quasi-two-dimensional (2-D) hyperbolic materials, on which a simple dipole source can excite a well-confined and tunable surface plasmon polariton (SPP). The analysis is based on the Green’s function for an anisotropic 2-D surface, which nominally requires the evaluation of a 2-D Sommerfeld integral. We show that for the SPP contribution, this integral can be evaluated efficiently in a mixed continuous-discrete form as a continuous spectrum contribution (branch cut integral) of a residue term, in distinction to the isotropic case, where the SPP is simply given as a discrete residue term. The regime of strong SPP excitation is discussed, and the complex-plane singularities are identified, leading to physical insight into the excited SPP. We also present a stationary phase solution valid for large radial distances. Examples are presented using graphene strips to form a hyperbolic metasurface and thin-film black phosphorus. Green’s function and complex-plane analysis developed allows for the exploration of hyperbolic plasmons in general 2-D materials.
机译:我们研究了二维和准二维(2-D)双曲材料的电磁响应,在该材料上,简单的偶极子源可以激发有限且可调谐的表面等离振子极化子(SPP)。该分析基于各向异性二维表面的格林函数,该函数名义上需要评估二维Sommerfeld积分。我们表明,对于SPP贡献,可以以混合连续离散形式作为残差项的连续频谱贡献(分支割积分)来有效地评估该积分,这与各向同性情况不同,其中SPP可以简单地表示为离散残差项。讨论了强SPP激发的机制,并识别了复杂平面的奇点,从而导致了对激发的SPP的物理洞察。我们还提出了适用于较大径向距离的固定相解决方案。使用石墨烯条形成双曲线的超表面和薄膜黑磷的例子。 Green的功能和复杂平面分析的开发使您可以探索普通二维材料中的双曲等离子体。

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