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Tunable terahertz absorber using double-layer decussate graphene ribbon arrays

机译:使用双层钝化石墨烯碳带阵列的可调太赫兹吸收器

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A tunable graphene-based terahertz perfect absorber consists of periodic double-layer decussate graphene ribbons is proposed. In the proposed absorber, the two arrays of graphene ribbons are separated by the dielectric zro2. From the bottom up, the multi-layer absorber structure is made up of Au/ zro2/graphene materials respectively. The reflection of all the electromagnetic waves is effectively restricted in the interlayer between the graphene ribbons and the metal plate, and the transmission of electromagnetic waves is also suppressed due to thick metal base. By varying the chemical potential graphene, the peak absorption frequency can be flexibly tuned. By changing the geometric parameters of the structure, more than 99% absorbance can be achieved. Moreover, the graphene absorber has a simple structure and can be easily manufactured by an existing manufacturing process, such absorber will benefit the fabrication of detecting, sensing and optoelectronic devices.
机译:提出了一种可调谐的基于石墨烯的太赫兹完美吸收体,该吸收体由周期性双层钝化石墨烯带组成。在提出的吸收器中,石墨烯带的两个阵列被电介质zro2隔开。从下至上,多层吸收器结构分别由Au / zro2 / graphene材料组成。所有电磁波的反射都有效地限制在石墨烯带和金属板之间的夹层中,并且由于金属基底较厚,电磁波的传输也受到抑制。通过改变化学势石墨烯,可以灵活地调节峰值吸收频率。通过更改结构的几何参数,可以实现超过99%的吸光度。此外,石墨烯吸收体具有简单的结构并且可以通过现有的制造工艺容易地制造,这种吸收体将有利于检测,感测和光电器件的制造。

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