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Large-scale self-organization of reconfigurable topological defect networks in nematic liquid crystals

机译:向列型液晶中可重构拓扑缺陷网络的大规模自组织

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摘要

Topological defects in nematic liquid crystals are ubiquitous. The defects are important in understanding the fundamental properties of the systems, as well as in practical applications, such as colloidal self-assembly, optical vortex generation and templates for molecular self-assembly. Usually, spatially and temporally stable defects require geometrical frustration imposed by surfaces; otherwise, the system relaxes because of the high cost of the elastic energy. So far, multiple defects are kept in bulk nematic liquid crystals by top-down lithographic techniques. In this work, we stabilize a large number of umbilical defects by doping with an ionic impurity. This method does not require pre-patterned surfaces. We demonstrate that molecular reorientation controlled by an AC voltage induces periodic density modulation of ions accumulated at an electrically insulating polymer interface, resulting in self-organization of a two-dimensional square array of umbilical defects that is reconfigurable and tunable.
机译:向列型液晶中的拓扑缺陷无处不在。这些缺陷对于理解系统的基本特性以及在实际应用中非常重要,例如胶体自组装,光学涡旋生成和分子自组装的模板。通常,空间和时间上稳定的缺陷需要表面施加几何上的挫折。否则,由于弹性能量的高成本,系统松弛。到目前为止,通过自上而下的光刻技术在块状向列液晶中保持了多种缺陷。在这项工作中,我们通过掺杂离子杂质来稳定大量的脐带缺陷。此方法不需要预先构图的表面。我们证明了由AC电压控制的分子重新定向诱导了在电绝缘聚合物界面处积累的离子的周期性密度调制,从而导致可重构和可调的脐带缺陷二维正方形阵列的自组织。

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