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Elastic dependence of defect modes in one-dimensional photonic crystals with a cholesteric elastomer slab

机译:用胆甾醇弹性体板坯的一维光子晶体中缺陷模式的弹性依赖性

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摘要

We studied the transmission spectra in a one-dimensional dielectric multilayer photonic structure containing a cholesteric liquid crystal elastomer layer as a defect. For circularly polarized incident electromagnetic waves, we analyzed the optical defect modes induced in the band gap spectrum as a function of the incident angle and the axial strain applied along the same axis as the periodic medium. The physical parameters of the structure were chosen in such a way the photonic band gap of the cholesteric elastomer lies inside that of the multilayer. We found that, in addition to the defect modes associated with the thickness of the defect layer and the anisotropy of the elastic polymer, two new defect modes appear at both band edges of the cholesteric structure, whose amplitudes and spectral positions can be elastically tuned. Particularly, we showed that, at normal incidence, the defect modes shift toward the long-wavelength region with the strain; whereas, for constant elongation, such defects move toward larger frequencies with the incidence angle.
机译:我们研究了含有胆甾型液晶弹性体层作为缺陷的一维介电多层光子结构中的透射光谱。对于圆偏振的入射电磁波,我们分析了作为入射角的函数和沿与周期性介质相同的轴施加的轴向应变在带隙光谱中感应的光学缺陷模式。选择该结构的物理参数以这样的方式选择胆甾型弹性体的光子带隙位于多层的内侧。我们发现,除了与缺陷层厚度和弹性聚合物的各向异性相关的缺陷模式之外,胆甾型结构的两个带边缘出现了两种新的缺陷模式,其幅度和光谱位置可以弹性调谐。特别是,我们表明,在正常入射时,缺陷模式与应变的长波长区域变为;然而,对于恒定伸长率,这种缺陷朝向具有入射角的较大频率移动。

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