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由介电-金属混合天线阵列结构组成的可切换多功能超表面

Switchable Multifunctional Meta-Surface Composed by Dielectric-Metal Hybrid Antenna Array Architecture.

作者信息

Huang Yule, Yang Jiaxin, Zhang Ying, Wei Zhongchao, Liu Hongzhan, Guo Jianping

机构信息

Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices, School of Information and Optoelectronic Science and Engineering, South China Normal University, Guangzhou 510006, China.

出版信息

Nanomaterials (Basel). 2021 Oct 27;11(11):2862. doi: 10.3390/nano11112862.

Abstract

Strontium titanate (STO), the dielectric material, has caught the world's attention due to its outstanding properties, such as high permittivity, high refractive index, and low loss in the terahertz band. Its permittivity is relevant to the environment temperature. Herein, a multifunctional meta-surface composed of a dielectric-metal hybrid antenna array has been demonstrated, which is a single-layer STO elliptic cylinder. On the one hand, when the environment temperature is 300 K, the proposed meta-surface can achieve perfect absorption and polarization conversion in the frequency range from 0.1 to 0.25 THz; particularly, the meta-surface absorptance can reach 99.97% and 99.92% at a frequency of 0.103 and 0.13 THz respectively, and while it is used as a polarization conversion device, the degree of circular polarization and the ellipticity angle can reach 0.986 and 44.5° at a frequency of 0.228 THz. On the other hand, when the environment temperature changes from 300 to 450 K, the absorption peak changes with the temperature, and the average absorptance reaches 96% at resonance frequency. The proposed meta-surface can be applied in many fields, such as optical sensing, imaging, and energy harvesting. Moreover, it provides a potential solution to research the integrated device in a complex electromagnetic environment.

摘要

钛酸锶(STO)作为一种介电材料,因其具有诸如高介电常数、高折射率以及在太赫兹频段低损耗等优异特性而备受全球关注。其介电常数与环境温度相关。在此,已展示了一种由介电 - 金属混合天线阵列构成的多功能超表面,它是单层的STO椭圆圆柱体。一方面,当环境温度为300K时,所提出的超表面在0.1至0.25太赫兹的频率范围内可实现完美吸收和偏振转换;特别地,该超表面在0.103太赫兹和0.13太赫兹频率下的吸收率分别可达99.97%和99.92%,并且当其用作偏振转换装置时,在0.228太赫兹频率下圆偏振度和椭圆率角可分别达到0.986和44.5°。另一方面,当环境温度从300K变化到450K时,吸收峰随温度变化,在共振频率下平均吸收率达到96%。所提出的超表面可应用于许多领域,如光学传感、成像和能量收集。此外,它为在复杂电磁环境中研究集成器件提供了一种潜在的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef1b/8621002/5f50268d006d/nanomaterials-11-02862-g001.jpg

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