论文标题

在周期性三角底物下,二维固体尘土等离子体的超润滑式过渡

Superlubric-pinned transition of a two-dimensional solid dusty plasma under a periodic triangular substrate

论文作者

Huang, Y., Reichhardt, C., Reichhardt, C. J. O., Feng, Yan

论文摘要

使用Langevin动力学模拟研究了由2D三角周期底物调节的二维(2D)固体尘埃等离子体的默认动力学的上润滑型过渡。当2D固体灰尘等离子体的晶格结构与三角形底物完美匹配时,观察到两个独特的固定和移动有序状态,因为外部均匀的驱动力逐渐从零增加。但是,当晶格结构与三角形底物之间存在不匹配时,在浅层底物上,即使施加的驱动力很小,所有颗粒也可以自由滑动在底物上。这是高级润滑性的一个典型例子,这是由底物粒子和粒子粒子相互作用之间的竞争引起的。如果底物深度进一步增加,则随着驱动力从零增加,有三种动态状态由固定,无序的塑料流以及移动序列组成。在颗粒少于潜在井的最小值的不足系统中,发现三种不同动态状态的出现受底物深度控制,该深度使用平均迁移率进行定量表征。

The superlubric-pinned transition in the depinning dynamics of a two-dimensional (2D) solid dusty plasma modulated by 2D triangular periodic substrates is investigated using Langevin dynamical simulations. When the lattice structure of the 2D solid dusty plasma perfectly matches the triangular substrate, two distinctive pinned and moving ordered states are observed, as the external uniform driving force gradually increases from zero. When there is a mismatch between the lattice structure and the triangular substrate, however, on shallow substrates, it is discovered that all of the particles can slide freely on the substrate even when the applied driving force is tiny. This is a typical example of superlubricity, which is caused by the competition between the substrate-particle and particle-particle interactions. If the substrate depth increases further, as the driving force increases from zero, there are three dynamical states consisting of the pinned, the disordered plastic flow, and the moving ordered. In an underdense system, where there are fewer particles than potential well minima, it is found that the occurrence of the three different dynamical states is controlled by the depth of the substrate, which is quantitatively characterized using the average mobility.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源