论文标题
在不对称周期性基材下二维尘土等血浆的双向流动,由无偏见的外部激发驱动
Bidirectional flow of two-dimensional dusty plasma under asymmetric periodic substrates driven by unbiased external excitations
论文作者
论文摘要
使用Langevin动力学模拟研究了由无偏正弦激发力驱动的一维不对称周期性底物(1DAPS)调节的二维尘埃等离子体(2DDP)的集体转运性能。人们发现,通过改变无偏正弦外部激发的幅度和频率,以及1DPA的深度,都可以调整持久粒子流的方向和速度,即使用各种凝聚力实现粒子稳定漂移运动的rotteT效应的流动整流及其反转。对于1DAP下研究的2DDP,当激发的幅度从零增加时,总体漂移速度的幅度从零增加到1DAPS的简单方向上的最大值,接下来逐渐减少到零,然后从零增加到第二次逐渐延期的硬方向。已经发现,随着激发的频率和1DAPS的深度变化,最大整体漂移速度也会有所不同,激发的相应幅度同时变化。在2DDP的1DAP的简单和硬方向上观察到的棘轮效应归因于1DAPS的空间对称性断裂和粒子的惯性效应的组合,这进一步证实了三种不同的诊断诊断。
Collective transport properties of a one-dimensional asymmetric periodic substrate (1DAPS) modulated two-dimensional dusty plasma (2DDP) driven by an unbiased sinusoidal excitation force are investigated using Langevin dynamical simulations. It is discovered that, by changing the amplitude and frequency of the unbiased sinusoidal external excitations, as well as the depth of 1DPAS, both the direction and speed of the persistent particle flow can be adjusted, i.e., both the flow rectification and its reversal of the ratchet effect of the steady drift motion for particles are achieved using various excitations. For the studied 2DDP under the 1DAPS, when the amplitude of the excitation increases from zero, the magnitude of the overall drift velocity increases from zero to its first maximum in the easy direction of the 1DAPS, next decreases gradually back to zero, and then increases from zero to its second maximum in the hard direction of 1DAPS before finally gradually decaying. It is found that, as the frequency of the excitation and the depth of 1DAPS change, the maximum overall drift velocity also varies, and the corresponding magnitude of the excitation varies simultaneously. The observed ratchet effect in both the easy and hard directions of 1DAPS for 2DDP is attributed to the combination of the spatial symmetry breaking of 1DAPS and the inertial effects of particles, which is further confirmed by the three different presented diagnostics.