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Experimental investigation of circular Bragg phenomenon for oblique incidence

机译:圆形布拉格现象对斜入射的实验研究

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A 20-period-thick chiral sculptured thin film (STF) of zinc selenide was fabricated on a glass slide by thermal evaporation. A variable-angle spectroscopic system was devised and used to measure all eight of the circular remittances of the chiral STF as functions of the angle of incidence and the free-space wavelength. Thereby, the center wavelength and the bandwidth of the circular Bragg phenomenon exhibited by structurally chiral materials such as cholesteric liquid crystals and chiral STFs were comprehensively characterized for incidence angles in the range [0 degrees, 70 degrees]. The experimental data were qualitatively compared with data calculated using a helicoidal model for the relative permittivity dyadic of the chiral STF, and assuming that all three eigenvalues of that dyadic obey the single-resonance Lorentz model. The chosen representation was found adequate to represent the blue shift of the center wavelength with an increasing angle of incidence, but the Lorentz model requires modification to develop improved predictive capabilities. (C) 2015 Optical Society of America
机译:通过热蒸发在载玻片上制备了厚度为20倍的硒化锌手性雕刻薄膜(STF)。设计了可变角度光谱系统,并用于测量手性STF的所有八个圆形吸收率,它们是入射角和自由空间波长的函数。由此,对于入射角在[0度,70度]范围内,全面地表征了由胆甾醇型液晶和手性STF等结构性手性材料表现出的圆形布拉格现象的中心波长和带宽。将实验数据与使用螺旋模型计算的手性STF的相对介电常数二进角定性比较,并假定该二进角的所有三个特征值均遵循单共振Lorentz模型。发现所选择的表示足以表示入射角增加时中心波长的蓝移,但是洛伦兹模型需要修改以开发改进的预测能力。 (C)2015年美国眼镜学会

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