论文标题

从金属阵列中概括了支持Bloch样表面等离子体极化子

Generalization of the circular dichroism from metallic arrays that support Bloch-like surface plasmon polaritons

论文作者

Guo, X., Liu, C., Ong, H. C.

论文摘要

亚波长光系统中的破碎镜子对称性表现出许多有趣的手律效应,例如光旋转和圆形二色性。当此类系统以晶格形式定期放置时,除了内在的手性外,外在的手性也会参与其中,总体效果不仅取决于基础和晶格,还取决于激发构型。在这里,我们研究平面性手性纳米荷尔阵列在平方晶格中支持Bloch样表面等离子体极化子(SPP),并阐明系统几何形状和激发如何有助于圆形二色性。通过使用时间耦合模式理论(CMT),分析阵列的不对称因子和散射矩阵。值得注意的是,我们发现不对称因子仅取决于耦合极化角度和p-和S偏尔之间的偶联相位差。此外,可以简单地将+/- 2处的非对称因子的上限通过取向阵列的晶格,以适当激发类似Bloch的SPP,同时使基础模仿两个正交和相对位移的偶极子,以表明外部和内在的蜂鸣率之间的相互作用。这些模型已通过数值模拟和实验验证,从提出的双插槽系统中得出的不对称因素分别为1.82和1.55。

The broken mirror symmetry in subwavelength photonic systems has manifested many interesting chiroptical effects such as optical rotation and circular dichroism. When such systems are placed periodically in a lattice form, in addition to intrinsic chirality, extrinsic chirality also takes part, and the overall effect depends not only on the basis and lattice but also the excitation configuration. Here, we study planar chiral nanohole arrays in square lattice that support Bloch-like surface plasmon polaritons (SPPs) and clarify how the system geometry and the excitation contribute to circular dichroism. By using temporal coupled mode theory (CMT), the dissymmetry factor and the scattering matrix of the arrays are analytically formulated. Remarkably, we find the dissymmetry factor depends only on the coupling polarization angle and the in-coupling phase difference between the p- and s-polarizations. Besides, the upper limit of the dissymmetry factor at +/-2 can be reached simply by orienting the lattice of the arrays for properly exciting the Bloch-like SPPs and at the same time making the basis mimic two orthogonal and relatively displaced dipoles, demonstrating the interplay between extrinsic and intrinsic chirality. The models have been verified by numerical simulations and experiments, yielding the dissymmetry factors to be 1.82 and 1.55, respectively, from the proposed dual slot system.

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