Tasinkevych M, Silvestre N M, Patrício P, Telo da Gama M M
Departamento de Física da Faculdade de Ciências and Centro de Física Teórica e Computacional, Universidade de Lisboa, Avenida Professor Gama Pinto 2, P-1649-003 Lisboa Codex, Portugal.
Eur Phys J E Soft Matter. 2002 Nov;9(4):341-7. doi: 10.1140/epje/i2002-10087-y.
The interaction between two disks immersed in a 2D nematic is investigated i) analytically using the tensor order parameter formalism for the nematic configuration around isolated disks and ii) numerically using finite-element methods with adaptive meshing to minimize the corresponding Landau-de Gennes free energy. For strong homeotropic anchoring, each disk generates a pair of defects with one-half topological charge responsible for the 2D quadrupolar interaction between the disks at large distances. At short distance, the position of the defects may change, leading to unexpected complex interactions with the quadrupolar repulsive interactions becoming attractive. This short-range attraction in all directions is still anisotropic. As the distance between the disks decreases, their preferred relative orientation with respect to the far-field nematic director changes from oblique to perpendicular.
i)使用张量序参量形式对孤立圆盘周围的向列相构型进行解析研究;ii)使用具有自适应网格划分的有限元方法进行数值研究,以最小化相应的朗道 - 德热纳自由能。对于强垂直锚定,每个圆盘会产生一对具有二分之一拓扑电荷的缺陷,这些缺陷在远距离时导致圆盘之间的二维四极相互作用。在短距离时,缺陷的位置可能会发生变化,从而导致意想不到的复杂相互作用,四极排斥相互作用变为吸引相互作用。这种在所有方向上的短程吸引力仍然是各向异性的。随着圆盘之间距离的减小,它们相对于远场向列相指向矢的首选相对取向从倾斜变为垂直。