Germano Guido, Schmid Friederike
Fakultät für Physik, Universität Bielefeld, Universitätsstrasse 25, D-33615 Bielefeld, Germany and Fachbereich Chemie, Philipps-Universität Marburg, D-35032 Marburg, Germany.
J Chem Phys. 2005 Dec 1;123(21):214703. doi: 10.1063/1.2131065.
We present a large-scale molecular-dynamics study of nematic-paranematic interfaces under shear. We use a model of soft repulsive ellipsoidal particles with well-known equilibrium properties, and consider interfaces which are oriented normal to the direction of the shear gradient (common stress case). The director at the interface is oriented parallel to the interface (planar). A fixed average shear rate is imposed with moving periodic boundary conditions, and the heat is dissipated with a profile-unbiased thermostat. First, we study the properties of the interface at one particular shear rate in detail. The local interfacial profiles and the capillary wave fluctuations of the interfaces are calculated and compared with those of the corresponding equilibrium interface. Under shear, the interfacial width broadens and the capillary wave amplitudes at large wavelengths increase. The strain is distributed inhomogeneously in the system (shear banding), the local shear rate in the nematic region being distinctly higher than in the paranematic region. Surprisingly, we also observe (symmetry-breaking) flow in the vorticity direction, with opposite direction in the nematic and the paranematic state. Finally, we investigate the stability of the interface for other shear rates and construct a nonequilibrium phase diagram.
我们展示了一项关于剪切作用下向列相-顺列相界面的大规模分子动力学研究。我们使用具有众所周知的平衡性质的软排斥椭球体颗粒模型,并考虑与剪切梯度方向垂直取向的界面(常见应力情况)。界面处的指向矢平行于界面(平面状)。通过移动周期性边界条件施加固定的平均剪切速率,并使用与轮廓无关的恒温器耗散热量。首先,我们详细研究了在一个特定剪切速率下界面的性质。计算了界面的局部界面轮廓和毛细波涨落,并与相应平衡界面的进行了比较。在剪切作用下,界面宽度变宽,大波长处的毛细波振幅增加。应变在系统中不均匀分布(剪切带化),向列相区域的局部剪切速率明显高于顺列相区域。令人惊讶的是,我们还观察到在涡度方向上的(对称性破缺)流动,在向列相和顺列相状态下方向相反。最后,我们研究了其他剪切速率下界面的稳定性,并构建了非平衡相图。