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THE HEXAGONAL PHASE OF WORMLIKE MICELLES

机译:沃克密克尔的六角相

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A mean-field description is presented for the nematic and hexagonal ordering of intrinsically polydisperse semiflexible wormlike micelles interacting via a hard core volume exclusion potential. The predicted phase diagram is determined by two parameters, controlling the intrinsic rigidity of the micelles an their size in the isotropic phase before a liquid crystalline phase emerges, Increasing the micellar flexibility destabilizes the nematic phase, which disappears in favor of the hexagonal phase when the ratio of the persistence length and the diameter of the micelles is reduced to less than a certain minimum value. The minimum rigidity required to stabilize a nematic depends on whether the micelles in the isotropic phase can be viewed as rodlike or not. For micelles on average longer than roughly a persistence length, we find a nematic phase provided the persistence length is greater than about thirteen times the micelle diameter. For increasingly shorter rods, this value goes up; the nematic phase is ''squeezed'' out and we find a direct transition from the isotropic to the hexagonal phase over a larger flexibility range. (C) 1996 American Institute of Physics. [References: 48]
机译:给出了通过硬核体积排阻势相互作用的本质上多分散的半柔性蠕虫状胶束的向列和六角形排列的平均场描述。预测的相图由两个参数确定,在液晶相出现之前,控制胶束的固有刚度及其在各向同性相中的大小,增加胶束柔韧性会破坏向列相,当向列相消失时,向列相消失了。持续长度与胶束直径的比值减小到小于某个最小值。稳定向列相所需的最小刚度取决于各向同性相中的胶束是否可以视为棒状。对于平均长度大于大致持续时间的胶束,我们发现向列相,条件是持续时间大于胶束直径的十三倍。对于越来越短的杆,该值会上升;向列相被“挤出”,我们发现在较大的柔性范围内,从各向同性相向六方相有直接过渡。 (C)1996年美国物理研究所。 [参考:48]

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