McDermott D, Amelang J, Reichhardt C J Olson, Reichhardt C
Theoretical Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545 USA and Department of Physics, University of Notre Dame, Notre Dame, Indiana 46556 USA.
Theoretical Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545 USA and Division of Engineering and Applied Science, California Institute of Technology, Pasadena, California 91125 USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Dec;88(6):062301. doi: 10.1103/PhysRevE.88.062301. Epub 2013 Dec 2.
We numerically examine colloidal particles driven over a muffin tin substrate. Previous studies of this model identified a variety of commensurate and incommensurate static phases in which topological defects can form domain walls, ordered stripes, superlattices, or disordered patchy regimes as a function of the filling fraction. Here, we show that the addition of an external drive to these static phases can produce distinct dynamical responses. At incommensurate fillings the flow occurs in the form of localized pulses or solitons correlated with topological defect structures. Transitions between different modes of motion can occur as a function of increasing drive. We measure the average particle velocity for specific ranges of external drive and show that changes in the velocity response correlate with changes in the topological defect arrangements. We also demonstrate that in the different dynamic phases, the particles have distinct trajectories and velocity distributions. Dynamic transitions between ordered and disordered flows exhibit hysteresis, while in strongly disordered regimes there is no hysteresis and the velocity-force curves are smooth. When stripe patterns are present, transport can occur at an angle to the driving direction.
我们通过数值方法研究了在松饼盘状衬底上驱动的胶体颗粒。此前对该模型的研究确定了多种 commensurate 和 incommensurate 的静态相,其中拓扑缺陷可形成畴壁、有序条纹、超晶格或无序斑块状区域,这取决于填充率。在此,我们表明向这些静态相添加外部驱动力会产生不同的动力学响应。在 incommensurate 填充情况下,流动以与拓扑缺陷结构相关的局域脉冲或孤子形式出现。不同运动模式之间的转变可随驱动力增加而发生。我们测量了特定外部驱动力范围内的平均粒子速度,并表明速度响应的变化与拓扑缺陷排列的变化相关。我们还证明,在不同的动态相中,粒子具有不同的轨迹和速度分布。有序流和无序流之间的动态转变表现出滞后现象,而在强无序状态下则没有滞后现象,速度 - 力曲线是平滑的。当存在条纹图案时,输运可与驱动方向成一定角度发生。