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Section 1Tunable broadband terahertz absorbers based on multiple layers of graphene ribbons

机译:第1节基于多层石墨烯带的可调谐宽带太赫兹吸收器

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A novel metamaterial structure consisting of multiple graphene/dielectric layers and metallic substrate is proposed to achieve the broadband absorption response at terahertz (THz) frequencies. Utilizing the phase modulation effect generated by graphene ribbons, the bright-dark field is formed to suppress the reflection based on interference theory in a wide period. By irregularly stacking four graphene ribbons of varying widths on four dielectric layers with unequal thickness in a period, we merge successive absorption peaks into a broadband absorption spectrum successfully. The absorption decreases with fluctuations as the incident angle increases. The position of the absorption spectrum can be dynamically tuned by a small change in the Fermi level of graphene instead of re-optimizing and re-fabricating the device. In addition, the bandwidth of the absorber can be further improved by means of increasing the graphene/dielectric layers. The structure proposed in this paper has potential applications in tunable terahertz photonic devices such as dynamic broadband filters, modulators and sensors.
机译:提出了一种由多个石墨烯/介电层和金属衬底组成的新型超材料结构,以实现太赫兹(THz)频率下的宽带吸收响应。利用石墨烯带产生的相位调制效应,根据干涉理论在宽范围内形成了明暗场以抑制反射。通过将四个宽度不等的石墨烯碳带不规则地堆叠在一个厚度不相等的四个介电层上,使我们成功地将连续的吸收峰合并到宽带吸收光谱中。吸收率随入射角的增加而波动。可以通过石墨烯的费米能级的微小变化来动态调整吸收光谱的位置,而不用重新优化和重新制造该设备。另外,可以通过增加石墨烯/介电层来进一步提高吸收体的带宽。本文提出的结构在可调谐太赫兹光子器件中具有潜在的应用,例如动态宽带滤波器,调制器和传感器。

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