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Defect mode tunability based on the electro-optical characteristics of the one-dimensional graphene photonic crystals

机译:基于一维石墨烯光子晶体的电光特性的缺陷模式可调性

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New (to the best of our knowledge) photonic crystal optical filters with unique optical characteristics are theoretically introduced in this research. Here, our design is composed of a defect layer inside one-dimensional photonic crystals. The main idea of our study is dependent on the tunability of the permittivity of graphene by means of the electro-optical effect. The transfer matrix method and the electro-optical effect represent the cornerstone of our methodology to investigate the numerical results of this design. The numerical results are investigated for four different configurations of the defective one-dimensional photonic crystals for the electric polarization mode. The graphene as a defect layer is deposited on two different electro-optical materials (lithium niobate and polystyrene) to obtain the four different configurations. The electro-optical properties of graphene represent the main role of our numerical results. In the infrared wavelength range from 0.7 mu m to 1.6 mu m, the reflectance properties of the composite structures are numerically simulated by varying several parameters such as defect layer thickness, applied electrical field, and incident angle. The numerical results show that graphene could enhance the reflectance characteristics of the defect mode in comparison with the two electro-optical materials without graphene. In the presence of graphene with lithium niobate, the intensity of the defect mode increased by 5% beside the shift in its position with 41 nm. For the case of polystyrene, the intensity of the defect mode increased from 6.5% to 68.8%, and its position is shifted with 72 nm. Such a design could be of significant interest in the sensing and measuring of electric fields, as well as for filtering purposes. (C) 2020 Optical Society of America
机译:新的(据我们所知)在本研究中理论上介绍了具有独特光学特性的光子晶体光学滤光器。在这里,我们的设计由一维光子晶体内的缺陷层组成。我们研究的主要思想依赖于通过电光效应的石墨烯介电常数的可调性。传输矩阵方法和电光效应代表了我们研究这种设计的数值结果的方法的基石。研究了数值结果,用于电极化模式的四种不同配置的四种不同的配置。将石墨烯作为缺陷层沉积在两种不同的电光材料(铌酸锂和聚苯乙烯)上,以获得四种不同的构造。石墨烯的电光特性代表了我们数值结果的主要作用。在红外波长范围为0.7μm至1.6μm,通过改变诸如缺陷层厚度,施加的电场和入射角的诸如缺陷层厚度,施加的电场和入射角来进行数值模拟复合结构的反射特性。数值结果表明,与没有石墨烯的两个电光材料相比,石墨烯可以增强缺陷模式的反射特性。在具有铌酸锂的石墨烯的存在下,缺陷模式的强度在其位置的偏移旁边增加5%,其位置具有41nm。对于聚苯乙烯的情况下,缺陷模式的强度从6.5%增加到68.8%,其位置随72nm而移动。这种设计可能对电场的感测和测量以及过滤目的具有重要兴趣。 (c)2020美国光学学会

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    《Applied optics》 |2020年第16期|共10页
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