Chernyshuk S B, Lev B I
Institute of Physics, NAS Ukraine, Prospekt Nauki 46, Kyiv 03650, Ukraine.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Apr;81(4 Pt 1):041701. doi: 10.1103/PhysRevE.81.041701. Epub 2010 Apr 6.
The theory of elastic interaction of micrometer-sized axially symmetric colloidal particles immersed into confined nematic liquid crystal has been proposed. General formulas are obtained for the self-energy of one colloidal particle and interaction energy between two particles in arbitrary confined nematic liquid crystals with strong anchoring condition on the bounding surfaces. Particular cases of dipole-dipole interaction in the homeotropic and planar nematic cell with thickness L are considered and found to be exponentially screened on far distances with decay length lambdadd=L/pi. It is predicted that bounding surfaces in the planar cell crucially change the attraction and repulsion zones of usual dipole-dipole interaction. As well it is predicted that the decay length in quadrupolar interaction is two times smaller than for the dipolar case in the homeotropic cell.
提出了关于浸没在受限向列型液晶中的微米级轴对称胶体粒子弹性相互作用的理论。得到了在边界表面具有强锚定条件的任意受限向列型液晶中单个胶体粒子的自能以及两个粒子之间相互作用能的通用公式。考虑了厚度为L的垂直排列和平行排列向列型液晶盒中偶极 - 偶极相互作用的特殊情况,发现其在远距离处以指数形式屏蔽,衰减长度为λdd = L / π。预计平行排列液晶盒中的边界表面会显著改变通常偶极 - 偶极相互作用的吸引和排斥区域。同时预计,垂直排列液晶盒中四极相互作用的衰减长度比偶极情况小两倍。