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基于彭罗斯镶嵌的石墨烯覆盖的多频太赫兹超材料吸收器。

Penrose tiling-inspired graphene-covered multiband terahertz metamaterial absorbers.

出版信息

Opt Express. 2023 Apr 10;31(8):12653-12668. doi: 10.1364/OE.485847.

Abstract

In this work, we propose two different graphene-covered nanostructured metamaterial absorbers inspired by Penrose tiling. These absorbers allow spectrally tunable absorption within the terahertz spectrum corresponding to 0.2-20 THz. We have conducted finite-difference time-domain analyses to determine the tunability of these metamaterial absorbers. The proposed structures, Penrose models 1 and 2, perform differently from each other due to their design characteristics. Penrose model 2 reaches a perfect absorption at 8.58 THz. In addition, the relative absorption bandwidth calculated at full-wave at half-maximum in Penrose model 2 varies between 5.2% and 9.4%, which characterizes the metamaterial absorber as a wideband absorber. Also, we can observe that as we increase the Fermi level of graphene from 0.1 to 1 eV, the absorption bandwidth and relative absorption bandwidth both increase. Our findings show the high tunability of both models through varying graphene's Fermi level, the graphene's thickness, the substrate's refractive index, and the proposed structures' polarization. We can further observe multiple tunable absorption profiles that may find applications in designer infrared absorbers, optoelectronic devices, and THz sensors.

摘要

在这项工作中,我们提出了两种不同的基于彭罗斯镶嵌的石墨烯覆盖的纳米结构超材料吸收体。这些吸收体允许在太赫兹光谱(对应于 0.2-20THz)内进行光谱可调谐吸收。我们进行了有限差分时域分析,以确定这些超材料吸收体的可调谐性。所提出的结构,彭罗斯模型 1 和 2,由于它们的设计特点而表现不同。彭罗斯模型 2 在 8.58THz 处达到完美吸收。此外,在全波半最大值处计算的彭罗斯模型 2 的相对吸收带宽在 5.2%和 9.4%之间变化,这将超材料吸收体表征为宽带吸收体。此外,我们可以观察到,随着我们将石墨烯的费米能级从 0.1 增加到 1eV,吸收带宽和相对吸收带宽都增加了。我们的研究结果表明,通过改变石墨烯的费米能级、石墨烯的厚度、衬底的折射率以及所提出结构的极化,两种模型都具有很高的可调谐性。我们可以进一步观察到多个可调谐吸收谱,这些吸收谱可能在设计红外吸收体、光电设备和太赫兹传感器方面有应用。

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