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A Three-Dimensional Dual-Band Terahertz Perfect Absorber as a Highly Sensitive Sensor

Wei Yin, Zhonglei Shen, Shengnan Li, Liuyang Zhang, Xuefeng Chen

2021Frontiers in Physics31 citationsDOIOpen Access PDF

Abstract

Terahertz (THz) absorbers are highly desirable in sensing and detection devices. Herein, we have proposed a 3D dual-band near-perfect absorber that works in the THz regime for sensing applications. The theoretical calculation shows that the absorption efficiency of the absorber can reach 99.0 and 97.0% at 1.125 and 1.626 THz, respectively. Double absorption peaks can be tuned independently by alternating the geometric parameters of unit resonators. The underlying physical mechanism of the absorber matches well with the well-known impedance matching theory. Compared with its planar counterpart, our proposed absorber exhibits a figure of merit enhancement of at least two times due to its out-of-plane induced large interfacial area. Additionally, the absorber can work robustly at a wide range of incident angles and keep insensitive to polarization states, which renders it great for highly sensitive sensing.

Topics & Concepts

Terahertz radiationResonatorPlanarMaterials scienceFigure of meritMulti-band deviceOpticsPolarization (electrochemistry)Impedance matchingOptoelectronicsMetamaterial absorberAbsorption (acoustics)Electrical impedancePhysicsMetamaterialTunable metamaterialsComputer scienceChemistryTelecommunicationsComputer graphics (images)Quantum mechanicsPhysical chemistryAntenna (radio)Metamaterials and Metasurfaces ApplicationsAdvanced Antenna and Metasurface TechnologiesTerahertz technology and applications
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