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流动对铁磁向列液晶动力学的影响。

Effects of flow on the dynamics of a ferromagnetic nematic liquid crystal.

机构信息

Department of Physics, University of Bayreuth, 95440 Bayreuth, Germany.

Department of Physics, Faculty of Mathematics and Physics, University of Ljubljana, SI-1000 Ljubljana, Slovenia.

出版信息

Phys Rev E. 2018 Apr;97(4-1):042705. doi: 10.1103/PhysRevE.97.042705.

Abstract

We investigate the effects of flow on the dynamics of ferromagnetic nematic liquid crystals. As a model, we study the coupled dynamics of the magnetization, M, the director field, n, associated with the liquid crystalline orientational order, and the velocity field, v. We evaluate how simple shear flow in a ferromagnetic nematic is modified in the presence of small external magnetic fields, and we make experimentally testable predictions for the resulting effective shear viscosity: an increase by a factor of 2 in a magnetic field of about 20 mT. Flow alignment, a characteristic feature of classical uniaxial nematic liquid crystals, is analyzed for ferromagnetic nematics for the two cases of magnetization in or perpendicular to the shear plane. In the former case, we find that small in-plane magnetic fields are sufficient to suppress tumbling and thus that the boundary between flow alignment and tumbling can be controlled easily. In the latter case, we furthermore find a possibility of flow alignment in a regime for which one obtains tumbling for the pure nematic component. We derive the analogs of the three Miesowicz viscosities well-known from usual nematic liquid crystals, corresponding to nine different configurations. Combinations of these can be used to determine several dynamic coefficients experimentally.

摘要

我们研究了流动对铁磁向列液晶动力学的影响。作为模型,我们研究了磁化强度 M、与液晶取向序相关的指向矢场 n 以及速度场 v 的耦合动力学。我们评估了在存在小外磁场的情况下铁磁向列中的简单剪切流如何被修改,并且我们对由此产生的有效剪切粘度做出了可实验验证的预测:在磁场约为 20 mT 的情况下增加了 2 倍。对于磁化方向处于或垂直于剪切平面的两种情况,我们分析了铁磁向列中的经典单轴向列液晶的特征流排列。在前一种情况下,我们发现小的面内磁场足以抑制翻滚,因此可以很容易地控制流排列和翻滚之间的边界。在后一种情况下,我们还发现了在纯向列相获得翻滚的区域中存在流排列的可能性。我们推导出了通常在向列液晶中已知的三个 Miesowicz 粘度的类似物,对应于九个不同的配置。这些组合可用于实验确定几个动态系数。

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