Wang Jun, Zhou Wei, Li Er-Ping
Precision Engineering and Nanotechnology Centre, School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore.
Opt Express. 2009 Oct 26;17(22):20349-54. doi: 10.1364/OE.17.020349.
While plasmonic metamaterials find numerous applications in the field of nanophotonic devices, a device may work as a normal or plasmonic device, depending on whether it operates at the resonance mode. In this paper, the extraordinary light transmission through coaxial polygonal aperture arrays, including circle, hexagon, square, and triangle geometries, is studied using FDTD simulation. Circular, hexagonal and squared aperture arrays have similar high transmission rate, while triangular aperture array has considerably lower transmission rate. It is found that the transmission peaks reflect the resonance modes propagating along the direction of neighboring apertures. We hence rearrange the apertures from square lattice to triangle lattice to obtain a uniform resonance mode along the neighboring apertures. This leads to enhanced light transmission. The study gains understanding of new properties of the metamaterials based on plasmonic resonance.
虽然等离激元超材料在纳米光子器件领域有众多应用,但一个器件可能作为普通器件或等离激元器件工作,这取决于它是否在共振模式下运行。在本文中,使用时域有限差分(FDTD)模拟研究了通过同轴多边形孔径阵列(包括圆形、六边形、方形和三角形几何形状)的超常光传输。圆形、六边形和方形孔径阵列具有相似的高传输率,而三角形孔径阵列的传输率则低得多。研究发现,传输峰值反映了沿相邻孔径方向传播的共振模式。因此,我们将孔径从方形晶格重新排列为三角形晶格,以在相邻孔径之间获得均匀的共振模式。这导致了光传输的增强。该研究有助于理解基于等离激元共振的超材料的新特性。