论文标题
基于欺骗表面等离子体的双功能Luneburg-fisheye镜头
Bifunctional Luneburg-fisheye Lens Based on the Manipulation of Spoof Surface Plasmons
论文作者
论文摘要
由于具有亚波长脚步的引导波的能力,对欺骗表面等离子体(SSP)的操纵最近引起了极大的兴趣。但是,以前的大多数研究(用于单个功能)不适合多功能集成设备。在此,提出了基于二维金属支柱阵列的双功能Luneburg-fisheye镜头。首先,通过调整阵列中金属支柱的几何维度,确认其精确操纵激发SSP的能力得到确认,从而实现了次波长的聚焦和成像,分辨率是波长的0.14倍。然后,进一步实现了沿正骨方向的SSP的传播,并实现了双功能的luneburg-fisheye镜头。双功能镜头的特征是沿X轴的Luneburg,而在Y轴上,它呈现出Maxwell Fisheye镜头的性质。实验结果几乎与模拟结果完全匹配。这种双功能镜头可以有效地降低系统的复杂性并在多功能应用中发挥柔韧性,而基于金属柱的设计方法扩大了微波,Terahertz,甚至光学范围的梯度折射率透镜的应用范围。
Manipulation of spoof surface plasmons (SSPs) has recently intrigued enormous interest due to the capability of guiding waves with subwavelength footsteps. However, most of the previous studies, manifested for a single functionality, are not suitable for multifunctional integrated devices. Herein, a bifunctional Luneburg-fisheye lens is proposed based on a two-dimension metal pillar array. Firstly, by tuning the geometric dimension of the metal pillars in the array, its ability to precisely manipulate the excited SSPs along one direction is confirmed, achieving subwavelength focusing and imaging with the resolution up to 0.14 times the wavelength. Then, separately controlling the propagation of the SSPs along the orthotropic directions is further implemented, and the bifunctional Luneburg-fisheye lens is realized. The bifunctional lens is characterized as a Luneburg one along the x-axis, whereas in the y-axis, it presents the properties of a Maxwell fisheye lens. The experimental results almost immaculately match with the simulation ones. This bifunctional lens can validly reduce the system complexity and exert flexibility in multifunctional applications, while the proposed metal pillar-based design method broadens the application range of gradient refractive-index lens in the microwaves, terahertz, and even optical ranges.