基于高倾角的表面稳定铁电液晶电池中的胶层不稳定性导致的晶域重新定向

Neha Yadav, Suraj Kumar, A. Choudhary, Anil K. Thakur, Rajesh, Surinder P. Singh, A. Biradar
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引用次数: 0

摘要

研究人员对表面稳定几何形状的高倾角(45°)铁电液晶(FLC)进行了研究,该液晶没有手性 Smectic A(SmA∗)相,在接近转变温度(Tc)时,smectic 层会重新定向。电光研究表明,在室温下,液晶分子沿摩擦方向排列,但共晶层偏离摩擦方向倾斜,从而形成条纹畴。在这种高倾斜角 FLC 中,分子排列和胶层形成是从 Tc 时的底部和顶部摩擦槽开始的。由于双极相互作用的挫折作用,FLC 的畴形成发生在顶部和底部表面的中间。通过光学显微镜观察到了 SmC∗ 和手性向列相的 Smectic 层切换,并在 Tc 附近通过介电光谱法得到了证实。在 Smectic 层内,畴切换显示出比分子倾斜角更大的切换角。这些研究预计将对理解晶格层结构和畴切换过程具有重要意义,从而为大型光学切换器件铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Domain reorientation due to smectic layer instability in high tilt angle-based surface stabilized ferroelectric liquid crystal cell
High tilt angle (45°) ferroelectric liquid crystal (FLC) in surface stabilized geometry, having no chiral smectic A (SmA∗) phase, has been studied for the reorientation of the smectic layers near the transition temperature (Tc). The electro-optical studies have shown the stripe domain formation in which the liquid crystal molecules are aligned along the rubbing direction, but the smectic layers are tilted away from the rubbing direction at room temperature. In such high tilt angle FLCs, the molecular alignment and smectic layer formation start from bottom and top rubbed grooves at Tc. The domain formation of the FLC takes place in the middle of the top and bottom surfaces due to the frustration of the dipolar interaction. The smectic layer switching is observed by optical microscopy and confirmed by the dielectric spectroscopy method near Tc of SmC∗ and chiral nematic phases. Domain switching has shown a larger switching angle than the molecular tilt angle within the smectic layer. These studies are expected to be significant for understanding the smectic layer structure and the domain switching process, which may pave the way for large optical switching devices.
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