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Three-dimensional crystal orientation of blue phase liquid crystals on surfaces

机译:表面上蓝相液晶的三维晶体取向

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Liquid crystalline cholesteric blue phases (BPs) are of high interest for tunable electro-optic applications owing to their fast response times and quasi-polarization-independent phase modulation capabilities. Various approaches have recently been proposed to control the crystal orientation of BPs on substrates, but their basic orientation properties on standard, unidirectionally orienting substrates had not been investigated in detail. Here, detailed studies have been made on the Kossel diagrams of BPs on unidirectionally orienting substrates to understand the three-dimensional crystal orientation of BPs. We find that BPs show strong thermal hysteresis and that the structure of the preceding phase determines the orientation of BPs. Specifically, the BP II - I transition is accompanied by a rotation of the crystal such that the crystal direction defined by certain low-value Miller indices transform into different directions, and within the allowed rotations, different azimuthal configurations are obtained in the same cell depending on the thermal process. Our findings demonstrate that, for the alignment control of BPs, the thermal process is as important as the properties of the alignment layer.
机译:由于其快速响应时间和准偏振无关的相位调制能力,液晶胆甾型蓝相(BPS)对可调谐电光应用具有高兴趣。最近提出了各种方法来控制基板上的BPS的晶体取向,但它们对标准的基本取向性质,没有详细研究了单向定向的基板。这里,在单向定向的基板上对BPS的Kossel图进行了详细研究,以了解BPS的三维晶体取向。我们发现BPS显示出强烈的热滞后,并且前阶段的结构决定了BPS的方向。具体地,BP II - I转变伴随着晶体的旋转,使得由某些低值米勒索引变换成不同方向的晶体方向,并且在允许的旋转内,取决于相同的电池中获得不同的方位角配置在热处理。我们的研究结果表明,对于BPS的对准控制,热处理与取向层的性质一样重要。

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