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Peculiarities of spectral properties of a one-dimensional photonic crystal with an anisotropic defect layer of the nanocomposite with resonant dispersion

机译:具有共振色散的纳米复合材料各向异性缺陷层的一维光子晶体的光谱特性

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We have studied the spectral properties of a one-dimensional photonic crystal with a structure defect that represents an anisotropic nanocomposite layer sandwiched between two multilayer dielectric mirrors. The nanocomposite consists of metallic nanoscale inclusions of orientationally ordered spheroidal shape, dispersed in a transparent matrix, and is characterised by an effective resonant permittivity. Each of the two orthogonal polarisations of probe radiation corresponds to a particular plasmon resonant frequency of the nanocomposite. The problem of calculating the transmittance spectrum of the waves with s- and p-polarisations for such structures is solved. Spectral manifestation of splitting of the defect mode depending on the structure parameters and volumetric fraction of the nanospheroids is studied. The essential dependence of the position of maxima of the defect modes in the bandgap of the photonic crystal and their splitting on the incidence angle, polarisation, and the ratio of lengths of the polar and equatorial semi-axes of the spheroidal nanoparticles is shown.
机译:我们研究了具有结构缺陷的一维光子晶体的光谱特性,该缺陷代表夹在两个多层介电镜之间的各向异性纳米复合层。该纳米复合材料由分散在透明基质中的取向有序球体形状的金属纳米级夹杂物组成,并具有有效的共振介电常数。探针辐射的两个正交极化中的每个极化极化都对应于纳米复合材料的特定等离子体共振频率。解决了对于这种结构计算具有s偏振和p偏振的波的透射光谱的问题。研究了取决于纳米球的结构参数和体积分数的缺陷模式分裂的光谱表现。显示了缺陷模式的最大值在光子晶体带隙中的位置及其分裂对球状纳米粒子的入射角,偏振以及极性和赤道半轴的长度之比的基本依赖性。

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