Híjar Humberto
La Salle University Mexico, Benjamín Franklin 45, 06410 Mexico City, Mexico.
Phys Rev E. 2020 Dec;102(6-1):062705. doi: 10.1103/PhysRevE.102.062705.
Nematic multiparticle collision dynamics is used to simulate disclination ring defects around spherocylinders suspended in a liquid crystal. A solvent-solute interaction potential is integrated over a short-time scale by an auxiliary molecular dynamics procedure that updates the translational and angular coordinates of the spherocylinders. For suspended particles with length in the range ∼(60,160)nm and a fixed aspect ratio, this method is able to simulate static defects reported previously in the literature. It also simulates orientation fluctuations of the elongated colloids that exhibit a broad distribution and a slow relaxation rate. Finally, a nematic host driven from equilibrium by shear flow is simulated, and the consequent dynamic behavior of the colloid-defect pair is studied. Defects under shear present significant structural transformations from chairlike disclination rings to extended defects that cover most of the cylindrical surface of the colloid. This effect results from the hydrodynamic torque on the nematic field caused by the distorted flow around the spherocylinder, and it is present for small Reynolds and Ericksen numbers of order unity.
向列型多粒子碰撞动力学用于模拟悬浮在液晶中的球柱体周围的位错环缺陷。通过辅助分子动力学程序在短时间尺度上对溶剂 - 溶质相互作用势进行积分,该程序更新球柱体的平移和角坐标。对于长度在~(60,160)nm范围内且具有固定纵横比的悬浮粒子,此方法能够模拟文献中先前报道的静态缺陷。它还模拟了细长胶体的取向波动,这些波动呈现出广泛的分布和缓慢的弛豫速率。最后,模拟了由剪切流驱动偏离平衡的向列型主体,并研究了胶体 - 缺陷对随之而来的动态行为。剪切作用下的缺陷呈现出从椅状位错环到覆盖胶体大部分圆柱表面的扩展缺陷的显著结构转变。这种效应是由球柱体周围扭曲流动引起的向列场中的流体动力扭矩导致的,并且在雷诺数和埃里克森数为一阶单位的小数值情况下存在。