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Electric field-controlled transformation of the eigenmodes in a twisted-nematic Fabry–Pérot cavity

机译:扭曲向列法布里-珀罗腔内本征模的电场控制转变

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The polarized optical states in the transmission spectrum of a twisted-nematic Fabry–Pérot cavity with the distinctly broken Mauguin’s waveguide regime have been theoretically and experimentally investigated. Specific features of the electric field-induced transformation of the polarization and spectral characteristics of eigenmodes of the neighboring series at the overlap resonant frequencies have been examined. It is demonstrated that the linear polarizations of eigenmodes at the cavity boundaries remain nearly orthogonal and their frequency trajectories reproduce the avoided crossing phenomenon. The experimental data are confirmed analytically and by the numerical simulation of light transmission through the investigated anisotropic multilayer with the use of a Berreman matrix method. The results obtained can be generalized to any materials with the helix response.
机译:在理论上和实验上已经研究了扭曲向列法布里-珀罗腔的传输光谱中的偏振光学状态,其中明格-莫根的波导体制明显破裂。已经研究了电场感应的极化极化变换的特定特征和在重叠共振频率下相邻序列的本征模的光谱特性。结果表明,本征模在腔边界处的线性极化几乎保持正交,并且它们的频率轨迹重现了避免的交叉现象。实验数据通过使用Berreman矩阵方法通过研究的各向异性多层的光透射率的数值分析进行了分析和确认。可以将获得的结果推广到具有螺旋响应的任何材料。

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