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Exploiting soft organic optical resonant structure towards large range electro-optic tunable devices

机译:将软有机光学谐振结构应用于大范围电光可调器件

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摘要

Very fine molecular arrangement of cholesteric liquid crystal (CLC), can be compressed by applying an external electric field in the liquid crystal cell geometry. This enables very fine tuning of the wavelength of the reflected light. The compression of the periodic dielectric molecular arrangement continues till the chiral energy density meets its repulsive-type excluded volume interaction and hence the corresponding resonant wavelength jumps back to the original spectral position. Experimentally, the tuning range is observed to be highly affected by the concentration of the chiral dopant in the mixture. Analytically, it is shown that, use of chiral molecules with higher helical twisting power (HTP) can reduce the concentration of the chiral dopant for a desired pitch length in visible range and hence, the spectral tuning can be exploited over the entire visible range.
机译:胆甾型液晶(CLC)的非常精细的分子排列可以通过在液晶单元几何形状中施加外部电场来压缩。这样可以非常精细地调节反射光的波长。周期性电介质分子排列的压缩持续进行,直到手性能量密度达到其排斥型排除的体积相互作用,因此相应的共振波长跳回到原始光谱位置。在实验中,观察到调谐范围受混合物中手性掺杂剂浓度的高度影响。从分析上可以看出,使用具有较高螺旋扭曲力(HTP)的手性分子可以降低可见光范围内所需节距的手性掺杂剂的浓度,因此可以在整个可见光范围内利用光谱调谐。

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