具有竞争相互作用的模式形成系统的活性微观学和动态阶段.
C Reichhardt1, C J O Reichhardt1
1Los Alamos National Laboratory, Theoretical Division and Center for Nonlinear Studies, Los Alamos, New Mexico 87545, USA.
Physical review. E
|June 19, 2025
概括
一个探测粒子通过相互作用的粒子移动显示出一个分离值. 它的运动从弹性捕获过渡到塑性流动,以基于粒子相互作用的非单调速度和值变化.
科学领域:
- 软物质物理学 软物质物理学
- 复杂系统动力学 复杂系统动力学
背景情况:
- 具有竞争相互作用的粒子形成各种结构 (晶体,条纹,迷宫,泡).
- 探测器粒子动力学受到这些结构和相互作用的影响.
研究的目的:
- 在多粒子系统中研究探头粒子的驱动动力学.
- 描述探头粒子的取决于值和流动模式.
- 分析相互作用参数和粒子密度对探测器动态的影响.
主要方法:
- 在具有排斥和吸引相互作用的系统中模拟探头粒子.
- 变化吸引力与排斥的比率和粒子密度.
- 分析取决于值,滑动速度和流量状态.
主要成果:
- 一个类似于分离的值将探头粒子的弹性和塑料流动模式分开.
- 分离值和速度随相互作用比率和密度而变化非单调.
- 显而易见的流动状态和有效的阻力力出现,结构过渡的跳跃.
- 在沿着定向条纹的边缘运输状态中观察到有限的Hall角.
结论:
- 探头粒子的运动对底层粒子组件的结构非常敏感.
- 不同集体状态之间的过渡显著改变探头粒子的动态和阻力.
- 该系统对相互作用参数和密度的变化表现出复杂,非单调的反应.
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