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近晶A液晶薄膜中的表面排列无序与热卡西米尔力

Surface alignment disorder and thermal Casimir forces in smectic-A liquid crystalline films.

作者信息

Haddadan Fahimeh Karimi Pour, Naji Ali, Podgornik Rudolf

机构信息

Faculty of Physics, Kharazmi University, Tehran 15815-3587, Iran.

School of Physics, Institute for Research in Fundamental Sciences (IPM), Tehran 19395-5531, Iran.

出版信息

J Phys Condens Matter. 2020 May 15;32(32). doi: 10.1088/1361-648X/ab85f4.

Abstract

Disorder components in surface anchoring orientation of a smectic-A liquid crystalline film (occurring, e.g., due to surface contamination sources) modify the thermal pseudo-Casimir interaction mediated between the bounding surfaces of the film. By considering a plane-parallel slab with bounding surfaces positioned normal to the layering field of the film, we study the anchoring disorder effects by assuming that the disorder source is present on one of the two substrates, producing a Gaussian-weighted distribution for the preferred molecular anchoring orientation () on that substrate, with a finite mean and variance or, more generally, with a homogeneous in-plane, two-point correlation function. We show that the presence of disorder, either of quenched or annealed type, leads to a significant reduction in the magnitude of the net pseudo-Casimir force between the confining substrates of the film. This force can be attractive or repulsive depending on the boundary conditions. In the quenched case, the interaction force reduction is a direct consequence of an additive free energy term dependent on the variance of the disorder, while in the annealed case, the suppression of the interaction force can be understood based on a disorder-renormalized, effective anchoring strength. We predict a regime of behavior, exhibiting non-monotonic dependence for the interaction pressure as a function of separation. We also show that, by increasing the disorder variance, the interaction pressure changes sign and becomes a monotonically decreasing function of the separation between the substrates.

摘要

近晶 - A液晶膜表面锚定取向中的无序成分(例如,由于表面污染源而出现)会改变膜的边界表面之间介导的热赝卡西米尔相互作用。通过考虑一个平面平行平板,其边界表面垂直于膜的分层场,我们通过假设无序源存在于两个基板之一上来研究锚定无序效应,从而在该基板上产生优先分子锚定取向()的高斯加权分布,具有有限的均值和方差,或者更一般地,具有均匀的面内两点相关函数。我们表明,淬火或退火类型的无序的存在会导致膜的限制基板之间的净赝卡西米尔力的大小显著降低。根据边界条件,该力可以是吸引力或排斥力。在淬火情况下,相互作用力的降低是依赖于无序方差的附加自由能项的直接结果,而在退火情况下,相互作用力的抑制可以基于无序重整化的有效锚定强度来理解。我们预测了一种行为模式,其表现出相互作用压力作为间距的函数的非单调依赖性。我们还表明,通过增加无序方差,相互作用压力会改变符号并成为基板之间间距的单调递减函数。

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