Tunable Photonic Band Gaps in Two-Dimensional Bravais–Moiré Photonic Crystal Composed of High-Tc Superconductors

IF 1.9 Q3 PHYSICS, CONDENSED MATTER
H. A. Gómez-Urrea, J. G. Cardona, M. Mora-Ramos, C. Duque
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引用次数: 0

Abstract

In this study, we perform a theoretical study of light propagation properties in two-dimensional square photonic crystals (PCs) following Bravais–Moiré (BM) patterns composed of copper oxide high-temperature superconductors (HTSCs). The BM PCs are made of cylindrical cores formed from the combination of two square Bravais lattices. The Moiré pattern forms due to a commensurable rotation of one of these lattices with respect to the other. The dielectric function of the superconducting material is modeled by the two-fluid Gorter–Casimir theory. We report on the corresponding gap, the mapping as a function of the radius of dielectric cores, as well as the dispersion relations of TM modes for BM PCs and for the waveguide system built of defect lines within such a crystal. The BM PCs were composed of copper oxide HTSCs, which exhibit large tunability in terms of temperature.
由高温超导体组成的二维bravais - moir光子晶体的可调谐光子带隙
在这项研究中,我们对由氧化铜高温超导体(HTSCs)组成的二维方形光子晶体(PCs)中遵循bravais - moir (BM)模式的光传播特性进行了理论研究。BM pc由两个方形Bravais晶格组合而成的圆柱形核心组成。莫尔条纹的形成是由于其中一个晶格相对于另一个晶格的可通约旋转。采用双流体Gorter-Casimir理论对超导材料的介电函数进行了建模。我们报告了相应的间隙,作为介电芯半径的函数的映射,以及BM pc和在这种晶体中由缺陷线构建的波导系统的TM模式的色散关系。BM pc由氧化铜HTSCs组成,在温度方面表现出很大的可调性。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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