Hou Enzhu, Meng Dejia, Liang Zhongzhu, Xiong Ying, Yang Fuming, Tang Yinhui, Fan Yandong, Qin Zheng, Shi Xiaoyan, Zhang Yuhao, Liang Jingqiu, Chen Changhong, Lai Jianjun
Appl Opt. 2020 Mar 20;59(9):2695-2700. doi: 10.1364/AO.384027.
A dual-band metamaterial absorber based on local surface plasmon resonance is designed, which is composed of a periodic arrangement of stacked nanodisk structures. The structure unit consists of two dielectric layers and three metal layers. Based on the finite difference time domain method, under the condition of vertically incident plane light, two absorption peaks in the mid-wave infrared and long-wave infrared (MWIR/LWIR) are obtained, and the absorption is greater than 98%. The absorber has good incident state tolerance characteristics. We can modulate the MWIR/LWIR absorption peaks by changing the radius of the stacked disk structure, and MWIR and LWIR dual-band broadband absorption can be achieved by integrating different size elements in the plane. The average absorption is 71% for MWIR with 1.1 µm bandwidth from 3.2 to 4.3 µm and 88% for LWIR with 3 µm bandwidth from 8.5 to 11.5 µm. At the same time, the structure also has effective refractive index (RI) sensitivity characteristics. In the RI range of 1.8-2, the maximum RI sensitivity of the LWIR and the MWIR is 1085 nm/refractive index unit (RIU) and 1472 nm/RIU, respectively.
设计了一种基于局域表面等离子体共振的双频超材料吸收器,它由堆叠纳米盘结构的周期性排列组成。结构单元由两个介电层和三个金属层构成。基于时域有限差分法,在垂直入射平面光的条件下,在中波红外和长波红外(MWIR/LWIR)波段获得了两个吸收峰,且吸收率大于98%。该吸收器具有良好的入射状态容忍特性。通过改变堆叠盘结构的半径可调制MWIR/LWIR吸收峰,通过在平面内集成不同尺寸的单元可实现MWIR和LWIR双频宽带吸收。对于3.2至4.3 µm带宽为1.1 µm的MWIR,平均吸收率为71%;对于8.5至11.5 µm带宽为3 µm的LWIR,平均吸收率为88%。同时,该结构还具有有效的折射率(RI)敏感特性。在1.8 - 2的RI范围内,LWIR和MWIR的最大RI灵敏度分别为1085 nm/折射率单位(RIU)和1472 nm/RIU。