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Graphene-based plasmonic phase modulator for Terahertz-band communication

机译:用于太赫兹频带通信的基于石墨烯的等离激元相位调制器

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摘要

In this paper, a graphene-based plasmonic phase modulator for Terahertz band (0.1-10 THz) communication is proposed, modeled and analyzed. The modulator is based on a fixed-length graphene-based plasmonic waveguide, and leverages the possibility to tune the propagation speed of Surface Plasmon Polariton (SPP) waves on graphene by modifying the Fermi energy of the graphene layer. An analytical model for the modulator is developed starting from the dynamic complex conductivity of graphene and a revised dispersion equation for SPP waves in gated graphene structures. By utilizing the model, the performance of the modulator is analyzed in terms of symbol error rate when utilized to implement a M-ary digital phase shift keying modulation. The model is validated by means of electromagnetic simulations, and numerical results are provided to illustrate the performance of the modulator.
机译:本文提出,建模和分析了基于石墨烯的太赫兹频带(0.1-10 THz)通信的等离子体相位调制器。调制器基于固定长度的基于石墨烯的等离激元波导,并通过修改石墨烯层的费米能来利用可能性来调节表面等离激元极化子(SPP)波在石墨烯上的传播速度。从石墨烯的动态复电导率和门控石墨烯结构中SPP波的修正色散方程开始,开发了调制器的分析模型。通过利用该模型,当用于实现M进制数字相移键控调制时,就根据符号错误率分析了调制器的性能。该模型通过电磁仿真进行了验证,并提供了数值结果来说明调制器的性能。

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