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扭曲向列相液晶 CB7CB 的电 Freedericksz 态中的不稳定性。

Instabilities in the electric Freedericksz state of the twist-bend nematic liquid crystal CB7CB.

机构信息

Centre for Nano and Soft Matter Sciences, P. O. Box 1329, Jalahalli, Bangalore 560013, India.

出版信息

Soft Matter. 2018 Jul 4;14(26):5393-5406. doi: 10.1039/c8sm00554k.

Abstract

We report on the instabilities in the Freedericksz state of the twist-bend nematic (NTB) liquid crystal 1'',7''-bis(4-cyanobiphenyl-4'-yl)heptane (CB7CB). The quasi homeotropic NTB state, into which a planar (untwisted or 90°-twisted) nematic CB7CB layer transits under a strong electric field, is found to be unstable despite the material being dielectrically positive. Close to the NTB melting point, destabilization occurs through the formation of metastable toric focal conic domains (TFCDs) that, in time, transform into parabolic focal conic domains (PFCDs) with the confocal parabolae in vertical planes through the layer normal. This transformation occurs by a novel process of continued dissociation of TFCDs. We outline how the extended Volterra process could help in a general appreciation of focal conic defects in the NTB phase. At relatively lower temperatures, stripes develop competingly with TFCDs. Identifiable as oily streaks, they are both localized and polarity sensitive; they form close to the substrates; and in low frequency square wave fields, they get suppressed at the cathode and augmented at the anode at each polarity switch. The study also dwells on the N-NTB-N sandwich region, found between the N and NTB states under a small temperature gradient.

摘要

我们报告了扭曲向列(NTB)液晶 1'',7''-双(4-氰基联苯-4'-基)庚烷(CB7CB)在 Freedericksz 态下的不稳定性。准各向同性 NTB 态在强电场下向平面(未扭曲或 90°扭曲)向列 CB7CB 层转变,尽管材料具有介电正性,但仍不稳定。在接近 NTB 熔点的温度下,通过形成亚稳的托利焦点圆锥域(TFCD)而失稳,随着时间的推移,这些 TFCD 会转化为具有共焦抛物线的抛物焦点圆锥域(PFCD),共焦抛物线通过层法线穿过垂直平面。这种转变是通过 TFCD 的连续解离的新过程发生的。我们概述了扩展的 Volterra 过程如何有助于普遍了解 NTB 相中的焦点圆锥缺陷。在相对较低的温度下,条纹与 TFCD 竞争形成。可识别为油性条纹,它们既局部化又具有极性敏感性;它们在靠近基底的地方形成;在低频方波场中,它们在每个极性开关时在阴极被抑制,在阳极被增强。该研究还深入研究了在小温度梯度下在 N 和 NTB 态之间发现的 N-NTB-N 夹层区域。

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