Dual-narrowband terahertz metamaterial absorber based on all-metal vertical ring array for enhanced sensing application

Bin Cai, Lingling Yang, Lingxiao Wu, Yongzhi Cheng, Xiangcheng Li
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Abstract

In this paper, a novel design of a dual-narrowband metamaterial absorber (MMA) was proposed for use as a high-performance refractive index (RI) sensor in the terahertz (THz) region. The proposed MMA is based on a vertical-ring-shaped (VRS) structure gold film array. Through numerical simulation, it was found that the MMA can achieve high absorption levels of 99.8% and 94.6% at 1.723 THz and 2.457 THz, respectively, which are consistent with the values obtained using coupling mode theory (CMT). The MMA also exhibits high Q-factor values of about 27.35 and 102.38, respectively, which are close to the CMT values of 29.94 and 98.34. The dual-band strong absorption of the MMA is attributed to the guided modes of the critical coupling resonance, and the absorption properties can be adjusted by changing the geometrical parameters of the unit-cell structure of the MMA. The proposed MMA has a narrowband and a higher Q-factor, making it suitable for RI sensing, with a sensitivity of about 1.66 and 1.88 THz/RIU, and a figure-of-merit (FOM) of about 259.4 and 659.7 RIU−1, respectively. These findings open up new opportunities for the development of highly efficient MMAs, which have potential applications in biochemical sensing and detection in the THz region.
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基于全金属垂直环阵列的双窄带太赫兹超材料吸收器,用于增强传感应用
本文提出了一种新颖的双窄带超材料吸收器(MMA)设计,可用作太赫兹(THz)区域的高性能折射率(RI)传感器。所提出的 MMA 基于垂直环形(VRS)结构金膜阵列。通过数值模拟发现,该 MMA 在 1.723 太赫兹和 2.457 太赫兹下的吸收率分别达到 99.8% 和 94.6%,与耦合模式理论(CMT)得出的数值一致。MMA 还表现出较高的 Q 因子值,分别约为 27.35 和 102.38,接近 CMT 的 29.94 和 98.34 值。MMA 的双波段强吸收归因于临界耦合共振的导频模式,其吸收特性可通过改变 MMA 单胞结构的几何参数来调整。所提出的 MMA 具有窄带和较高的 Q 因子,使其适用于 RI 传感,灵敏度分别约为 1.66 和 1.88 THz/RIU,优越性系数(FOM)分别约为 259.4 和 659.7 RIU-1。这些发现为开发高效的 MMA 带来了新的机遇,有望应用于太赫兹区域的生化传感和检测。
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