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基于耦合环形偶极子模式的热可调偏振不敏感超宽带太赫兹超材料吸波器

Thermally tunable polarization-insensitive ultra-broadband terahertz metamaterial absorber based on the coupled toroidal dipole modes.

作者信息

Pan Hao, Zhang Haifeng

出版信息

Opt Express. 2021 Jun 7;29(12):18081-18094. doi: 10.1364/OE.427554.

DOI:10.1364/OE.427554
PMID:34154075
Abstract

In this paper, we propose a thermally tunable ultra-broadband polarization-insensitive terahertz (THz) metamaterial absorber (MMA) excited by the toroidal dipole moments. Due to the destructive interference resulting from two anti-parallel toroidal dipole moments, which depends on the twelve-fold trapezoidal metallic loops rotated by the axis parallel to the z-axis, the proposed MMA can achieve the absorption over 0.9 in a wide band of 2.38-21.13 THz, whose relative absorption band is 159.5%, at the temperature of 340 K. Meanwhile, by virtue of tuning the conductivity of vanadium dioxide (VO) controlled by temperature, the tunability of absorption, maximum reaching 0.57, in the above band can be attained. On the other hand, the MMA is insensitive to the polarization angle owing to its symmetric configuration and can simultaneously keep the absorption above 0.9 in the high-frequency band from 15 to 25 THz under the incidence with a large angle of nearly 60°. In this study, a new way to enhance the absorption in a wide band which is based on the toroidal dipole modes is presented. Such a metamaterial can assist in further understanding the underlying mechanism with respect to the toroidal dipole electromagnetic responses.

摘要

在本文中,我们提出了一种由环形偶极矩激发的热可调谐超宽带偏振不敏感太赫兹(THz)超材料吸收器(MMA)。由于两个反平行环形偶极矩产生的相消干涉,这取决于由平行于z轴的轴旋转的十二重梯形金属环,所提出的MMA在2.38 - 21.13 THz的宽带内可实现超过0.9的吸收,其相对吸收带宽为159.5%,在340 K的温度下。同时,通过调节由温度控制的二氧化钒(VO)的电导率,可实现上述频段内吸收的可调性,最大可达0.57。另一方面,由于其对称结构,该MMA对偏振角不敏感,并且在近60°的大角度入射下,在15至25 THz的高频段内可同时保持吸收高于0.9。在本研究中,提出了一种基于环形偶极模式增强宽带吸收的新方法。这种超材料有助于进一步理解关于环形偶极电磁响应的潜在机制。

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引用本文的文献

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A Photoexcited Switchable Dual-Function Metamaterial Absorber for Sensing and Wideband Absorption at THz Band.用于太赫兹波段传感和宽带吸收的光激发可切换双功能超材料吸收器。
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