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活性金属-石墨烯混合太赫兹表面等离激元极化激元

Active metal-graphene hybrid terahertz surface plasmon polaritons.

作者信息

Feng Mingming, Zhang Baoqing, Ling Haotian, Zhang Zihao, Wang Yiming, Wang Yilin, Zhang Xijian, Hua Pingrang, Wang Qingpu, Song Aimin, Zhang Yifei

机构信息

Shandong Technology Center of Nanodevices and Integration, School of Microelectronics, Shandong University, Jinan, Shandong, China.

Department of Opto-electronics and Information Engineering, School of Precision Instruments and Opto-electronics Engineering, Tianjin University, Tianjin, China.

出版信息

Nanophotonics. 2022 Jun 20;11(14):3331-3338. doi: 10.1515/nanoph-2022-0189. eCollection 2022 Jul.

Abstract

Surface plasmon polaritons (SPPs) are propagating electromagnetic surface waves with local electric field enhancement and nondiffraction limit at optical frequencies. At terahertz (THz) frequencies, a metal line with periodic grooves can mimic the optical SPPs with the same high cut-off response, which is referred to as designer SPPs. Here, by replacing metal grooves with graphene sheets, a novel active metal-graphene hybrid SPP device achieves significant phase modulation. Theoretically, the dispersion curves of THz SPPs are determined by the dimensions and periodicity of the grooves. Changing the chemical potential of graphene sweeps the effective groove depth, which correspondingly shifts the SPP cut-off frequency and modulates the slow-wave phase. A prototype device is fabricated and characterized under varying bias applied for graphene. The experiment demonstrates that the cut-off frequency red shifts from 200 to 177 GHz, and the phase variation is as large as 112° at 195 GHz under a low bias from -0.5 to 0.5 V. Simultaneously, the SPP transmittance is modulated by a factor of more than 3 dB from 140 to 177 GHz due to the graphene absorption. The proposed structure reveals a novel approach to study the nonreciprocal and topological SPPs with active modulation in the THz range.

摘要

表面等离激元极化激元(SPPs)是一种传播的电磁表面波,在光频下具有局部电场增强和无衍射极限特性。在太赫兹(THz)频率下,具有周期性凹槽的金属线可以模拟具有相同高截止响应的光学SPPs,这被称为设计型SPPs。在此,通过用石墨烯片替代金属凹槽,一种新型的有源金属 - 石墨烯混合SPP器件实现了显著的相位调制。理论上,太赫兹SPPs的色散曲线由凹槽的尺寸和周期性决定。改变石墨烯的化学势会改变有效凹槽深度,这相应地会使SPP截止频率发生偏移并调制慢波相位。制作了一个原型器件,并在施加于石墨烯的不同偏压下对其进行了表征。实验表明,在 -0.5至0.5 V的低偏压下,截止频率从200 GHz红移至177 GHz,在195 GHz时相位变化高达112°。同时,由于石墨烯的吸收,在140至177 GHz范围内,SPP透射率被调制了超过3 dB。所提出的结构揭示了一种在太赫兹范围内通过有源调制研究非互易和拓扑SPPs的新方法。

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