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Independently tunable dual-band perfect absorber based on graphene at mid-infrared frequencies

机译:基于石墨烯的中红外频率独立可调双频完美吸收器

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摘要

We design a dual-band absorber formed by combining two cross-shaped metallic resonators of different sizes within a super-unit-cell arranged in mirror symmetry. Simulations indicate that absorption efficiencies greater than 99% can be achieved at two different frequencies under normal incidence. We employ a design scheme with graphene integration, which allows independent tuning of individual absorption frequencies by electrostatically changing the Fermi energy of the graphene layer. High absorbance is maintained over a wide incident angle range up to 50 degrees for both TE and TM polarizations. It thus enables a promising way to design electrically tunable absorbers, which may contribute toward the realization of frequency selective detectors for sensing applications.
机译:我们设计了一个双频带吸收器,该吸收器是通过将两个不同大小的十字形金属谐振器组合成镜像对称排列的一个超级单元电池而形成的。仿真表明,在法向入射下,在两个不同的频率下可以实现大于99%的吸收效率。我们采用具有石墨烯集成的设计方案,该方案允许通过静电改变石墨烯层的费米能量来独立调节各个吸收频率。对于TE和TM偏振,在高达50度的宽入射角范围内都可以保持高吸收率。因此,这为设计电可调吸收器提供了一种有前途的方式,这可能有助于实现用于传感应用的频率选择检测器。

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