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基于石墨烯超表面的宽带可切换太赫兹偏振转换器

Broadband and switchable terahertz polarization converter based on graphene metasurfaces.

作者信息

Zhang Rui, You Bing, Wang Shengchuan, Han Kui, Shen Xiaopeng, Wang Weihua

出版信息

Opt Express. 2021 Aug 2;29(16):24804-24815. doi: 10.1364/OE.432601.

Abstract

In this work, we propose broadband and switchable terahertz (THz) polarization converters based on either graphene patch metasurface (GPMS) or its complementary structure (graphene hole metasurface, GHMS). The patch and hole are simply cross-shaped, composed of two orthogonal arms, along which plasmonic resonances mediated by Fabry-Perot cavity play a key role in polarization conversion (PC). An incidence of linear polarization will be converted to its cross-polarization (LTL) or circular polarization (LTC), as the reflected wave in the direction of two arms owning the same amplitude and π phase difference (LTL), or ±π/2 phase difference (LTC). Such requirements can be met by optimizing the width and length of two arms, thickness of dielectric layer, and Fermi level E of graphene. By using GPMS, LTL PC of polarization conversion ratio (PCR) over 90% is achieved in the frequency range of 2.92 THz to 6.26 THz, and by using GHMS, LTC PC of ellipticity χ ≤ -0.9 at the frequencies from 4.45 THz to 6.47 THz. By varying the Fermi level, the operating frequency can be actively tuned, and the functionality can be switched without structural modulation; for instance, GPMS supports LTL PC as E = 0.6 eV and LTC PC of χ ≥ 0.9 as E = 1.0 eV, in the frequency range of 2.69 THz to 4.19 THz. Moreover, GHMS can be optimized to sustain LTL PC and LTC PC of |χ| ≥ 0.9, in the frequency range of 4.96 THz to 6.52 THz, which indicates that the handedness of circular polarization can be further specified. The proposed polarization converters of broad bandwidth, active tunability, and switchable functionality will essentially make a significant progress in THz technology and device applications, and can be widely utilized in THz communications, sensing and spectroscopy.

摘要

在这项工作中,我们提出了基于石墨烯贴片超表面(GPMS)或其互补结构(石墨烯孔超表面,GHMS)的宽带可切换太赫兹(THz)偏振转换器。贴片和孔均为简单的十字形,由两个正交臂组成,沿这两个臂,由法布里 - 珀罗腔介导的表面等离子体共振在偏振转换(PC)中起关键作用。线偏振光入射时将转换为其交叉偏振(LTL)或圆偏振(LTC),这是因为在两个臂方向上的反射波具有相同幅度和π相位差(LTL)或±π/2相位差(LTC)。通过优化两个臂的宽度和长度、介电层厚度以及石墨烯的费米能级E,可以满足这些要求。使用GPMS时,在2.92太赫兹至6.26太赫兹的频率范围内实现了偏振转换率(PCR)超过90%的LTL PC;使用GHMS时,在4.45太赫兹至6.47太赫兹的频率下实现了椭圆率χ≤ -0.9的LTC PC。通过改变费米能级,可以主动调谐工作频率,并且无需结构调制即可切换功能;例如,在2.69太赫兹至4.19太赫兹的频率范围内,当E = 0.6电子伏特时,GPMS支持LTL PC,当E = 1.0电子伏特时,支持椭圆率χ≥0.9的LTC PC。此外,可以对GHMS进行优化,使其在4.96太赫兹至6.52太赫兹的频率范围内维持|χ|≥0.9的LTL PC和LTC PC,这表明可以进一步确定圆偏振的旋向。所提出的具有宽带宽、主动可调谐性和可切换功能的偏振转换器将在太赫兹技术和器件应用方面取得实质性进展,并可广泛应用于太赫兹通信、传感和光谱学领域。

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