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Theory and simulation of cholesteric blue phases: effect of the elastic constants on the stability of blue phases and the response of a blue phase cell to an electric field

机译:胆甾型蓝阶的理论与模拟:弹性常数对蓝相稳定性的影响及蓝相池对电场的响应

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We present our recent theoretical and numerical studies concerning the properties of cholesteric blue phases (BPs). One is on the effect of the variation of the Frank elastic constants on the stability of BPs. Our study is based on a classical and well-known theory of Meiboom et al. that gave a rough estimate of the temperature range of stable BPs in the case of equal elastic constants. We extend it to take into account the difference of the elastic constants. We show that the stability of BPs is greatly enhanced when the bend elastic constant K33 is smaller, which agrees well with recent experiments. We also show that larger splay (K11) and twist (K22) elastic constants are also favorable for the stability of BPs. The other subject of the present paper is the response of BPs in a parallel cell to an applied electric field. We carry out numerical calculations for the investigation the dynamics of orientational order and associated disclination lines. Our calculations are based on a Landau-de Gennes theory describing the orientational order of the liquid crystal by a second-rank tensor. Our preliminary calculations demonstrate that a non-uniform electric field induced by comb-like electrodes gives rise to non-trivial dynamics of disclination lines.
机译:我们展示了近期胆甾胺蓝阶(BPS)性质的理论和数值研究。一个是弗兰克弹性常数变化对BPS稳定性的影响。我们的研究基于Meiboom等人的经典和众所周知的理论。这对等于弹性常数的情况下,对稳定BP的温度范围进行了粗略估计。我们将其扩展到考虑到弹性常数的差异。我们表明,当弯曲弹性常数K33较小时,BPS的稳定性大大提高,这与最近的实验相当良好。我们还表明,较大的SPLAY(K11)和扭曲(K22)弹性常数也有利于BPS的稳定性。本文的另一个主题是BPS在平行电池中的BPS对施加的电场的响应。我们对调查定义顺序和相关披露线的动态进行数值计算。我们的计算基于LANDAU-DE Gennes理论,其描述了第二级张量的液晶的定向阶。我们的初步计算表明,由梳状电极诱导的非均匀电场产生了优化线的非微不足道的动态。

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