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Reflectivity of cholesteric liquid crystals with spatially varying pitch

机译:间距变化的胆甾型液晶的反射率

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Solids with spatially varying photonic structure offer gaps to light of a wider range of frequencies than do simple photonic systems. We solve numerically the field distribution in a cholesteric with a linearly varying inverse pitch (helical wavevector) using equations we derive for the general case. The simple idea that the position where the Bragg condition is locally satisfied is where reflection takes place is only true in part. Here, reflection is due to a region where the waves are forced to become evanescent, and the rate of variation of structure determines over which distance the waves decay and therefore how complete reflection is. The approximate local Bragg-de Vries schemes are shown to break down in detail at the edges of the gap, and an analytical estimate is given for the transmission coefficient.
机译:与简单的光子系统相比,具有空间变化的光子结构的固体在更大范围的频率上为光提供了间隙。我们使用一般情况下得出的方程,用线性变化的逆螺距(螺旋波矢)对胆甾型化合物中的场分布进行数值求解。仅局部满足布拉格条件的位置是发生反射的简单思想。在此,反射是由于波被迫消失而导致的,而结构的变化率决定了波衰减的距离以及反射的完全程度。示出了近似的局部布拉格-弗里斯(Bragg-de Vries)方案在间隙的边缘处详细分解,并且给出了透射系数的解析估计。

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