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基于非对称T形等离子体阵列的双波段红外完美吸收体。

Dual-band infrared perfect absorber based on asymmetric T-shaped plasmonic array.

作者信息

Feng Rui, Ding Weiqiang, Liu Linhua, Chen Lixue, Qiu Jun, Chen Guoqiang

出版信息

Opt Express. 2014 Mar 10;22 Suppl 2:A335-43. doi: 10.1364/OE.22.00A335.

Abstract

An infrared dual-band perfect absorber based on asymmetric T-shaped plasmonic array is designed and numerically investigated. Two distinct absorption peaks are achieved by localized surface plasmon polariton (LSPP) mode over a wide incident angular range. Both the absorption peaks can be finely tuned independently by varying the geometry of the structure. In our proposed structure, the period of the T-shaped structures becomes less and the multiple LSPP peaks are suppressed, which result in the sideband of absorption peaks very low. This dual-band perfect absorber has potential applications such as in infrared imaging devices, thermal bolometers, and wavelength selective radiators.

摘要

设计并数值研究了一种基于非对称T形等离子体阵列的红外双波段完美吸收体。通过局域表面等离子体激元(LSPP)模式在宽入射角范围内实现了两个不同的吸收峰。通过改变结构的几何形状,可以独立地对两个吸收峰进行精细调谐。在我们提出的结构中,T形结构的周期变小,多个LSPP峰受到抑制,这使得吸收峰的边带非常低。这种双波段完美吸收体在红外成像设备、热辐射计和波长选择性辐射器等方面具有潜在应用。

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