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Pseudo-Casimir forces in nematics with disorders in the bulk

机译:向列相中的伪卡西米尔力与大量失常

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摘要

A nematic liquid-crystalline slab is considered in which some rod-like particles are randomly distributed. The particles are locally elongated either homeotropic or planar with respect to the confining substrates of the cell. We consider thermal fluctuations of a nematic director which is aligned perpendicular to the confining substrates due to strong homeotropic anchoring at the substrates. The resulting fluctuation-induced force across the cell is analyzed for an annealed disorder in the anchoring of the nematic director at the dispersed mesoscopic particles. Within the saddle-point approximation to free energy of the system, the effect of the disorder is renormalization of the strength of the mean anchoring which is assumed to be homeotropic. By increasing the variance of the disorder, the modes become less massive and deviations from the mean behavior become larger, so that the disorder-free universal long-range attraction, due to the soft modes, is approached.
机译:考虑到向列型液晶平板,其中一些杆状颗粒是随机分布的。相对于电池的限制基底,颗粒局部地呈同向或平面的伸长。我们考虑了向列导向器的热波动,该向列导向器垂直于约束基板,这是由于在基板上的强烈的垂直锚固造成的。分析在电池上引起的波动诱导的力,以寻找向列导向器锚定在分散的介观粒子上的退火失调。在系统自由能的鞍点近似值内,无序的影响是假设均势的平均锚固强度的重新归一化。通过增加无序性的方差,模态将变得不那么庞大,与平均行为的偏差会变大,因此,由于软模态,趋近了无序无序的通用远程吸引。

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