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首页> 外文期刊>Journal of optoelectronics and advanced materials >Comparison of the terahertz and optical characteristics of graphene and silicene nanoribbons utilizing first-principles approach
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Comparison of the terahertz and optical characteristics of graphene and silicene nanoribbons utilizing first-principles approach

机译:使用第一性原理比较石墨烯和硅纳米带的太赫兹和光学特性

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Optical applications of graphene and related two-dimensional materials are continuously taking interest. In this study, accurate first-principles simulations are utilized for obtaining the terahertz and optical characteristics of realistic graphene and silicene nanoribbons (GNRs and SiNRs). Density functional theory is used for calculating the electron density and then Kubo-Greenwood formalism is applied for the computation and comparison of the complex dielectric functions of equivalent GNR and SiNR samples, which are found to be consistent with the previous results in the literature. Frequency-dependent complex conductivities of the devices under consideration are also obtained. The surface plasmon polariton (SPP) wave propagation properties of GNR and SiNR samples are then interpreted and compared. The frequency-dependent conductivity data are also imported into a full-wave electromagnetic simulation tool and the characteristics of the GNR and SiNR samples are evaluated for use as nanostrip transmission lines. It is found out that GNRs seem to be more advantageous compared to equivalent SiNRs from both SPP wave transmission frequency range and higher conductivity viewpoints.
机译:石墨烯和相关二维材料的光学应用一直受到关注。在这项研究中,准确的第一性原理模拟用于获得逼真的石墨烯和硅纳米带(GNR和SiNR)的太赫兹和光学特性。密度泛函理论用于计算电子密度,然后将Kubo-Greenwood形式主义应用于等效GNR和SiNR样品的复介电函数的计算和比较,这与文献中的先前结果一致。还可以获得所考虑的器件的频率相关复电导率。然后解释并比较了GNR和SiNR样品的表面等离子体激元(SPP)波传播特性。随频率变化的电导率数据也被导入到全波电磁仿真工具中,并对GNR和SiNR样品的特性进行了评估,以用作纳米带传输线。从SPP波的传输频率范围和更高的电导率角度来看,发现GNR似乎比等效的SiNR更具优势。

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