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On alignment of nematic liquid crystals infiltrating chiral sculptured thin films

机译:向列液晶渗透手性雕刻薄膜的取向

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A structurally right-handed chiral sculptured thin film (STF) with a central 90 degtwist defect was made by thermal evaporation of chalcogenide glass and the use of a serial bideposition process to exhibit a narrowband hole in the spectrum of the right-circularly polarized light reflected when right-circularly polarized light is normally incident on the chiral STF. In an attempt to build a tunable filter, the chiral STF was then infiltrated with a highly birefringent nematic liquid crystal (LC), which caused a linear reflectance peak to redshift by ~350 nm. But the circular Bragg phenomenon exhibited by the uninfiltrated chiral STF was greatly diminished owing to the similarity in the constitutive properties of the LC and the chalcogenide glass. No temperature dependence of the shifted peak was observed, which provided clear evidence that the LC molecules are not ordered inside the chiral STF but are randomly aligned instead.
机译:通过硫属元素化物玻璃的热蒸发,并采用串联双电沉积工艺,在右旋圆偏振光反射光谱中显示出窄带孔,从而制得了具有中心90度扭转扭曲缺陷的结构右旋手性雕刻薄膜(STF)。当右旋圆偏振光通常入射在手性STF上时。为了构建可调谐滤光片,手性STF随后被高度双折射的向列液晶(LC)渗透,导致线性反射峰红移约350 nm。但是,由于LC和硫属化物玻璃的本构性质相似,未渗透的手性STF表现出的圆形布拉格现象大大减少了。没有观察到移动峰的温度依赖性,这清楚地证明了LC分子在手性STF内不是有序的,而是随机排列的。

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