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Evaluation of translational friction coefficients of micro-sized spherical probes in nematic liquid crystals

机译:向列型液晶中微型球形探针平移摩擦系数的评估

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We study the translational friction coefficients of a spherical micrometric probe moving in nematic liquid crystalline fluids, by solving numerically the constitutive hydrodynamic equations of uncompressible isothermal nematic fluids (Leslie–Ericksen equations). The nematic medium is described by a vector field, which specifies the director orientation at each point and by the velocity vector field. Simulations of director dynamics surrounding the moving probe are presented, and the dependence of translational diffusion upon liquid crystal viscoelastic parameters is discussed. The time evolution of director field is studied in the presence of an orienting magnetic field in two characteristic situations, i.e. direction of motion parallel and perpendicular to field. In particular, a detailed analysis is given for the case of a spherical probe in rectilinear motion in nematic MBBA (4-methoxibenzylidene-4′-n-butylaniline), together with a comparison with other nematogens.
机译:我们通过数值求解不可压缩的等温向列相流体的本构流体力学方程(Leslie-Ericksen方程),研究了在向列液晶流体中运动的球形测微探针的平移摩擦系数。向列介质由矢量场描述,矢量场指定每个点的指向矢方向,并由速度矢量场描述。提出了围绕移动探针的指向矢动力学的仿真,并讨论了平移扩散对液晶粘弹性参数的依赖性。在两种特征情况下,即在平行和垂直于磁场的运动方向下,在存在定向磁场的情况下研究了指向矢场的时间演化。特别是,针对向列型MBBA(4-甲氧亚苄基-4'-正丁基苯胺)中直线运动的球形探针的情况进行了详细分析,并与其他线虫进行了比较。

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