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A graphene-assisted all-pass filter for a tunable terahertz transmissive modulator with near-perfect absorption

机译:石墨烯辅助全通滤波器用于吸收近乎完美的可调太赫兹透射调制器

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摘要

We proposed an all-pass filter based perfect absorber scheme which also can function as a highly efficient transmissive modulator. We theoretically analyzed the proposed scheme using the temporal coupled mode theory and showed that near-perfect absorption could be achieved with practically modest deviation from the critical coupling condition. We also demonstrated the feasibility of the proposed scheme in a grating-based all-pass filter device with a variable loss implemented by two separate graphene layers, achieving an absorption of ~99.8% and a transmission modulation depth of ~70 dB in a terahertz frequency range. We also numerically investigated the tunability of the designed device.
机译:我们提出了一种基于全通滤波器的完美吸收器方案,该方案还可以用作高效的透射调制器。我们使用时间耦合模式理论从理论上分析了所提出的方案,结果表明,在与临界耦合条件相差不大的情况下,可以实现近乎完美的吸收。我们还证明了该方案在基于光栅的全通滤波器装置中的可行性,该装置具有由两个单独的石墨烯层实现的可变损耗,在太赫兹频率下实现了〜99.8%的吸收和〜70 dB的传输调制深度范围。我们还通过数值方法研究了所设计设备的可调性。

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