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首页> 外文期刊>Molecular crystals and liquid crystals >Electric Field Dependence of Lasing Wavelength in Cholesteric Liquid Crystal with an In-Plane Helix Alignment
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Electric Field Dependence of Lasing Wavelength in Cholesteric Liquid Crystal with an In-Plane Helix Alignment

机译:面内螺旋取向的胆甾型液晶中激光波长的电场依赖性

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摘要

The authors report continue tuning of the lasing wavelength in cholesteric liquid crystals (ChLCs) by an applied electrical fields. Although the pitch length and the corresponding lasing wavelength is sensible to external fields, only a discrete shift in the pitch is observed in the conventional cell configuration where the helix axis is lying the cell-normal direction, since the molecules are anchored to a single direction at the substrate interfaces. In this study, continuous wavelength tuning is achieved by laying the helix in the cell-plane direction, mitigating the effects of anchoring: this alignment is attained simply by applying an electric field while cooling the sample from the iso tropic state, in a planarly rubbed sandwich cell. We also show that the tuning characteristics as that predicted based on calculations using the elastic theory.
机译:作者报告说,通过施加电场,可以继续调节胆甾型液晶(ChLC)中的激光波长。尽管螺距长度和相应的激光波长对外部场敏感,但是在常规的细胞结构中,螺线轴位于细胞法线方向,因此仅观察到螺距的离散位移,因为分子锚定在单个方向上在基板界面。在这项研究中,通过在单元平面方向上放置螺旋线,减轻了锚定的影响,实现了连续波长调谐:只需在电场作用下,将样品从各向同性状态冷却,然后在平面上摩擦,即可简单地通过施加电场来实现这种对准三明治细胞。我们还显示了基于弹性理论的计算所预测的调谐特性。

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