Bohley C, Stannarius R
Institute of Experimental Physics, Nonlinear Phenomena, Universitätsplatz 2, D-39016, Magdeburg, Germany.
Eur Phys J E Soft Matter. 2006 Jul;20(3):299-308. doi: 10.1140/epje/i2006-10019-y. Epub 2006 Jul 21.
The formation of regular colloid patterns in free-standing smectic films at the transition from the smectic-C to the isotropic or nematic phase is well known experimentally. The self-organization of isotropic or nematic droplets is caused by their mutual interaction, mediated by elastic distortions of the local director in the surrounding liquid crystal. These distortions are related to the anchoring conditions of the director at the droplet border. We describe analytically the energetics of the liquid crystal environment of a single droplet in one-constant approximation. A method of complex analysis, Conformal Mapping, is employed. Following a suggestion of Dolganov et al. (Phys. Rev. E. 73, 041706 (2006)), energetics of chain and grid patterns built from the colloids are investigated numerically in order to explain experimentally observed formations and their director fields.
在从近晶C相转变为各向同性或向列相时,在独立的近晶薄膜中形成规则的胶体图案,这在实验上是众所周知的。各向同性或向列液滴的自组织是由它们之间的相互作用引起的,这种相互作用由周围液晶中局部指向矢的弹性畸变介导。这些畸变与指向矢在液滴边界处的锚定条件有关。我们用单常数近似法对单个液滴的液晶环境的能量学进行了分析描述。采用了一种复分析方法,即保角映射。按照Dolganov等人(《物理评论E》73,041706(2006))的建议,对由胶体构成的链状和网格状图案的能量学进行了数值研究,以解释实验观察到的图案及其指向矢场。