Liu Jinsong, Ding Lan, Wang Kejia, Yao Jianquan
Wuhan National Laboratory for Optoelectronics, School of Optoelectronic Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.
Opt Express. 2009 Jul 20;17(15):12714-22. doi: 10.1364/oe.17.012714.
A plasmonic metamaterial is proposed for which an array of subwavelength apertures is pierced into a metallic foil whose one flat surface has been made with periodic rectangle holes of finite depth. Designed surface plasmons sustained by the holes are explored when the size and spacing of the holes are much smaller than those of the apertures. The transmission property of electromagnetic waves through the metamaterials is analyzed. Results show that the designed surface plasmons characterized by the holes could support the transmission resonances of the incident wave passing through the subwavelength apertures, and that the peak transmission wavelengths could be designed by controlling the geometrical and optical parameters of the holes. Example is taken at THz regime. Our work proposes a method to design the peak wavelengths, and may affect further engineering of surface plasmon optics, especially in THz to microwave regimes.
提出了一种等离子体超材料,其中一系列亚波长孔径被穿孔到一个金属箔中,该金属箔的一个平面上制作有有限深度的周期性矩形孔。当孔的尺寸和间距远小于孔径时,研究了由这些孔维持的设计表面等离子体激元。分析了电磁波通过超材料的传输特性。结果表明,以这些孔为特征的设计表面等离子体激元可以支持入射波通过亚波长孔径的传输共振,并且可以通过控制孔的几何和光学参数来设计峰值传输波长。以太赫兹频段为例。我们的工作提出了一种设计峰值波长的方法,可能会影响表面等离子体激元光学的进一步工程应用,特别是在太赫兹到微波频段。