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Liquid-crystalline half-Skyrmion lattice spotted by Kossel diagrams

机译:柯塞尔图发现液晶半Skyrmion晶格

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摘要

Skyrmions are swirl-like topological entities that have been shown to emerge in various condensed matter systems. Their identification has been carried out in different ways including scattering techniques and real-space observations. Here we show that Kossel diagrams can identify the formation of a hexagonal lattice of half-Skyrmions in a thin film of a chiral liquid crystal, in which case Kossel lines appear as hexagonally arranged circular arcs. Our experimental observations on a hexagonal lattice of half-Skyrmions and other defect structures resembling that of a bulk cholesteric blue phase are perfectly accounted for by numerical calculations and a theoretical argument attributing strong reflections yielding Kossel lines to guided mode resonances in the thin liquid crystal film. Our study demonstrates that a liquid crystal is a model system allowing the investigation of topological entities by various optical means, and also that Kossel techniques are applicable to the investigation of thin systems with non-trivial photonic band structures including topologically protected optical surface states.
机译:Skyrmion是漩涡状的拓扑实体,已显示出会出现在各种冷凝物质系统中。对它们的识别已通过不同的方式进行,包括散射技术和实际空间观测。在这里,我们表明,科索尔图可以识别在手性液晶薄膜中半Skyrmions六角形晶格的形成,在这种情况下,科索尔线显示为六角形排列的圆弧。我们对半Skyrmions六边形晶格和类似于块状胆甾型蓝相的其他缺陷结构的实验观察结果通过数值计算得到了完美的解释,并且理论论点将强反射归因于在薄液晶膜中产生了Kossel线与导模共振。 。我们的研究表明,液晶是一种可以通过各种光学手段研究拓扑实体的模型系统,并且科塞尔技术也适用于研究具有非平凡光子带结构(包括受拓扑保护的光学表面态)的薄系统。

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