SUPA, School of Physics and Astronomy, University of Edinburgh, James Clerk Maxwell Building, Peter Gutherie Tait Road, Edinburgh, EH9 3FD, UK.
Soft Matter. 2017 Sep 20;13(36):6137-6144. doi: 10.1039/c7sm00325k.
We provide a minimal model for an active nematic film in contact with both a solid substrate and a passive isotropic fluid, and explore its dynamics in one and two dimensions using a combination of hybrid Lattice Boltzmann simulations and analytical calculations. By imposing nematic anchoring at the substrate while active flows induce a preferred alignment at the interface ("active anchoring"), we demonstrate that directed fluid flow spontaneously emerges in cases where the two anchoring types are opposing. In one dimension, our model reduces to an analogue of a loaded elastic column. Here, the transition from a stationary to a motile state is akin to the buckling bifurcation, but offers the possibility to reverse the flow direction for a given set of parameters and boundary conditions solely by changing initial conditions. The two-dimensional variant of our model allows for additional tangential instabilities, and it is found that undulations form in the interface above a threshold activity. Our results might be relevant for the design of active microfluidic geometries or curvature-guided self-assembly.
我们提供了一个与固体基底和无源各向同性流体接触的主动向列膜的最小模型,并使用混合格子玻尔兹曼模拟和分析计算相结合的方法,在一维和二维两种情况下探索其动力学。通过在基底上施加向列锚定,同时活性流在界面上诱导出优先取向(“主动锚定”),我们证明了在两种锚定类型相互对立的情况下,定向流体流动会自发出现。在一维情况下,我们的模型简化为负载弹性柱的类似物。在这里,从静止到运动状态的转变类似于屈曲分叉,但提供了一种可能性,即在给定的参数和边界条件下,仅通过改变初始条件就可以改变流动方向。我们模型的二维变体允许出现额外的切向不稳定性,并且发现当活性超过一定阈值时,界面上会形成波动。我们的结果可能与主动微流控几何形状的设计或曲率引导的自组装有关。