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Tunable defect modes in chiral liquid crystals based on laser-induced modulation of helix

机译:基于激光诱导的螺旋调制的手性液晶中的可调谐缺陷模式

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A structural defect was introduced within the helical lattice of cholesteric liquid crystals to realize a tunable photonic defect mode in the selective reflection band, or the polarization sensitive photonic band-gap of the cholesteric liquid crystal. The cholesteric liquid crystal material was locally polymerized via a two-photon polymerization process and a finite unpolymerized region was left between two polymerized layers to act as the structural defect in which the helical pitch is different from the polymerized bulk. The structural defect was functionalized by first of all, rinsing the unpolymerized cholesteric liquid crystal, and then infiltrating a photo-chromic dye-doped cholesteric liquid crystal material into the gap. A defect mode was observed in the selective reflection band of the cholesteric liquid material at a wavelength depending on the contrast between the pitch at the defect and the bulk. The defect mode was tunable by applying heat or irradiating light at λ ~ 400 nm on the sample, which caused the shortening of the helix pitch of the cholesteric liquid crystal at the defect, therefore increasing the pitch contrast between the bulk and the defect. Reversible tuning of the defect mode was realized in an electrode-free cell.
机译:结构缺陷是胆甾型液晶的螺旋晶格内引入以实现在选择性反射带一个可调光子缺陷模,或偏振敏感光子胆甾型液晶的带隙。胆甾型液晶材料通过双光子聚合方法局部聚合,并且在两个聚合层之间留下有限的未聚合区域,以充当结构缺陷,其中螺旋间距与聚合体积不同。通过首先使结构缺陷官能化,冲洗未聚合的胆甾型液晶,然后将光染色染料掺杂的胆甾型液晶材料浸入间隙中。根据缺陷在缺陷和体积之间的间距之间的对比度,在波和型液体材料的选择性反射带中观察到缺陷模式。通过在样品上施加热量或在λ〜400nm处的光,这使得缺损在缺陷处的胆甾型液晶的螺旋间距缩短的缺陷模式,因此增加了散装和缺陷之间的螺距对比度。在无电极电池中实现了缺陷模式的可逆调谐。

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