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Dual-band, polarization-insensitive metamaterial perfect absorber based on monolayer graphene in the mid-infrared range

机译:基于中红外单层石墨烯的双波段,偏振不敏感的超材料完美吸收体

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A dual-band, polarization-insensitive metamaterials (MMs) perfect absorber based on monolayer graphene in the mid-infrared range were designed and researched. By designing a simple structure, under the optimal geometric parameters of the proposed structure, we simulate a MMs perfect absorber, corresponding the two absorption peaks at wavelengths 48.49?μm and 65.33?μm with absorptivity 99.31% and 99.91%. Physical mechanisms of the MMs perfect absorber is investigated by the impedance matching theory. The study found that by changing the Fermi level of graphene, the resonant peak wavelength of the proposed MMs perfect absorber can be flexibly tuned without re-manufacturing the structure. In addition, the research results also indicate that the presented MMs perfect absorber has greater tolerance to the incident angle of the transverse magnetic (TM) and transverse electric (TE) modes, where the polarization is insensitive. This research can be used for based on graphene in the mid-infrared range photonic devices in absorption, imaging, detection, filtering and other applications.
机译:设计并研究了基于中红外单层石墨烯的双波段,极化不敏感超材料(MMs)完美吸收体。通过设计一个简单的结构,在该结构的最佳几何参数下,我们模拟了一个MMs完美吸收体,对应两个波长为48.49μm和65.33μm的吸收峰,吸收率分别为99.31%和99.91%。通过阻抗匹配理论研究了MMs完美吸收体的物理机理。研究发现,通过改变石墨烯的费米能级,可以在不重新制造结构的情况下灵活地调整所提出的MM完美吸收体的共振峰波长。此外,研究结果还表明,所提出的MMs完美吸收体对极化不敏感的横向磁(TM)和横向电(TE)模的入射角具有更大的耐受性。这项研究可用于基于石墨烯的中红外范围光子器件在吸收,成像,检测,滤波等方面的应用。

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