Zhu Wenqi, Reichhardt C, Reichhardt C J O, Feng Yan
Institute of Plasma Physics and Technology, School of Physical Science and Technology, Soochow University, Suzhou 215006, China.
Theoretical Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev E. 2022 Jul;106(1-2):015202. doi: 10.1103/PhysRevE.106.015202.
Directional depinning dynamics of a two-dimensional (2D) dusty plasma solid modulated by a 2D square periodic substrate are investigated using Langevin dynamical simulations. We observe prominent directional locking effects when the direction of the external driving force is varied relative to the underlying square substrate. These locking steps appear when the direction of the driving force is close to the symmetry direction of the substrate, corresponding to the different dynamical flow patterns and the structures. In the conditions between the adjacent locking steps, moving ordered states are observed. Although the discontinuous transitions often occur between the locking steps and the nonlocking portion, the continuous transitions are also found around the locking step associated with the disordered plastic flow close to its termini. Our results show that directional locking also occurs for underdamped systems, which could be tested experimentally in dusty plasmas modulated by 2D substrates.
利用朗之万动力学模拟研究了二维方形周期衬底调制的二维尘埃等离子体固体的定向脱钉动力学。当外部驱动力的方向相对于底层方形衬底变化时,我们观察到显著的定向锁定效应。当驱动力方向接近衬底的对称方向时,会出现这些锁定台阶,对应于不同的动态流动模式和结构。在相邻锁定台阶之间的条件下,观察到移动有序状态。虽然在锁定台阶和非锁定部分之间经常发生不连续转变,但在与接近其末端的无序塑性流动相关的锁定台阶周围也发现了连续转变。我们的结果表明,欠阻尼系统也会出现定向锁定,这可以在二维衬底调制的尘埃等离子体中进行实验测试。