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Twist of cholesteric liquid crystal sandwiched between plates with asymmetry in anchoring energies

机译:在锚定能量中夹在板之间的胆甾型液晶夹在板之间

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We consider director configurations of cholesteric liquid crystal (CLC) cells with two plane confining substrates. Exact solutions of the Euler-Lagrange equations for out-of-plane orientations of the easy axes that correspond to inhomogeneous conical structures of CLC director are derived. We study dependence of the CLC twist wavenumber on the free twisting number assuming that anchoring energies at the substrates are either equal or different. In both cases this dependence is found to be generally discontinuous with hysteresis loops and bistability effects involved. For CLC cells with identical substrates and planar anchoring conditions the jump-like behaviour only disappears in the weak anchoring limit. Contrastingly, when the anchoring strengths are different, there is the finite value of anchoring below which the dependence becomes continuous. Another effect is the appearance of the gap between the adjacent twist wavenumber intervals representing locally stable director configurations. We calculate the critical value of anchoring asymmetry and present the results of numerical calculations.
机译:我们考虑具有两个平面限制基板的胆甾型液晶(CLC)细胞的导演配置。衍生出对应于CLC导向器的不均匀轴结构的容易轴外面向的euler-lagrange方程的精确解。假设基板上的锚固能量是等于或不同的,我们研究CLC扭转波数对自由扭转数的依赖性。在这两种情况下,发现这种依赖性通常不连续,涉及滞后环和涉及的双稳态效应。对于具有相同基板的CLC电池和平面锚定条件,跳转行为仅在弱锚定极限中消失。比较的是,当锚固强度是不同的时,存在下面的锚定的有限值,该锚固变得连续。另一个效果是表示局部稳定导向配置的相邻扭转波数间隔之间的间隙的外观。我们计算锚定不对称的临界值,并呈现数值计算结果。

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