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基于二氧化钒条带的可调谐超宽带太赫兹超材料吸波器。

Tunable ultra-broadband terahertz metamaterial absorber based on vanadium dioxide strips.

作者信息

Gevorgyan Lilit, Haroyan Hovhannes, Parsamyan Henrik, Nerkararyan Khachatur

机构信息

Department of Microwave Physics, Yerevan State University A. Manoogian 1 Yerevan 0025 Armenia

出版信息

RSC Adv. 2023 Apr 17;13(18):11948-11958. doi: 10.1039/d3ra01194a.

Abstract

A simple design of an ultra-broadband metamaterial absorber (MMA) of terahertz (THz) radiation based on vanadium dioxide (VO) configurations is proposed. The system is composed of a top pattern representing orderly distributed VO strips, a dielectric spacer and an Au reflector. Theoretical analysis based on the electric dipole approximation is performed to characterize the absorption and scattering properties of an individual VO strip. The results then are used to design an MMA composed of such configurations. It is shown that the efficient absorption characteristics of the Au-insulator-VO metamaterial structure can be ensured in a broad spectrum of 0.66-1.84 THz with an absorption band relative to the center frequency reaching as high as 94.4%. The spectrum of the efficient absorption can be easily tuned the corresponding choice of strip dimensions. Wide polarization and incidence angle tolerance for both transverse electric (TE) and transverse magnetic (TM) polarizations are ensured by adding an identical parallel layer rotated by 90 degrees in respect to the first one. Interference theory is applied to elucidate the absorption mechanism of the structure. The possibility of modulation of the electromagnetic response of MMA relying on the tunable THz optical properties of VO is demonstrated.

摘要

提出了一种基于二氧化钒(VO)结构的太赫兹(THz)辐射超宽带超材料吸收器(MMA)的简单设计。该系统由代表有序分布的VO条带的顶部图案、介电间隔层和金反射器组成。基于电偶极近似进行理论分析,以表征单个VO条带的吸收和散射特性。然后将结果用于设计由这种结构组成的MMA。结果表明,Au-绝缘体-VO超材料结构在0.66-1.84 THz的宽频谱内可确保高效吸收特性,相对于中心频率的吸收带宽高达94.4%。通过相应选择条带尺寸,可轻松调节高效吸收频谱。通过添加相对于第一个旋转90度的相同平行层,确保了横向电(TE)和横向磁(TM)极化的宽偏振和入射角容限。应用干涉理论阐明该结构的吸收机制。证明了依靠VO的可调太赫兹光学特性调制MMA电磁响应的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5df0/10107755/4eacf55c036c/d3ra01194a-f1.jpg

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