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Dynamics of interacting particle systems: Modeling implications of the repulsive interactions and experiments on magnetic prototypes

机译:相互作用粒子系统的动态:排斥相互作用的建模和实验对磁性原型的影响

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摘要

In this work, we investigate the dynamics of interacting particle systems subjected to repulsive forces, such as lattices of magnetized particles. To this end, we first develop a general model capable of capturing the complete dynamical behavior of interacting particle systems governed by arbitrary potentials. The model elucidates the important role played by the static repulsive forces exchanged between particles in the initial equilibrium configuration, which is distilled and mathematically captured by a dedicated component of the stiffness matrix. The implications of the model are then examined through the simple illustrative example of a magnetic particle oscillator, by which we show that the effect associated with the initial static forces is germane to two- or higher-dimensional particle systems and vanishes for one-dimensional (1D) chains. In the context of wave propagation, we show that this type of effect manifests as modal-selective corrections of the dispersion relation of 2D repulsive lattices. To corroborate these findings, we perform laser vibrometry experiments on a lattice prototype consisting of a triangular grid of magnets supported by an elastic foundation of thin pillars. The tests unequivocally confirm the emergence of distinctive dispersive regimes in quantitative accordance to the model.
机译:在这项工作中,我们研究了经受排斥力的相互作用粒子系统的动态,例如磁化颗粒的格子。为此,我们首先开发一种能够捕获由任意潜力控制的互动粒子系统的完整动态行为的一般模型。该模型阐明了在初始平衡配置中颗粒之间交换的静态排斥力起作用的重要作用,该初始平衡构型蒸馏和数学地被刚度矩阵的专用分量捕获。然后通过磁性粒子振荡器的简单说明性实例检查模型的含义,通过该磁体粒子振荡器,我们表明与初始静力的效果是具有两维或高维粒子系统的锗,并为一维( 1D)链。在波传播的背景下,我们表明这种类型的效果表现为2D排斥格子的色散关系的模态选择性校正。为了证实这些发现,我们对由由薄柱的弹性基础支撑的磁体的三角形栅格组成的晶格原型进行激光振动实验。该测试明确证实了根据模型定量定量的独特分散制度的出现。

著录项

  • 来源
    《Physical review, B》 |2020年第5期|共7页
  • 作者

    Jiao Weijian; Gonella Stefano;

  • 作者单位

    Univ Minnesota Dept Civil Environm &

    Geoengn Minneapolis MN 55455 USA;

    Univ Minnesota Dept Civil Environm &

    Geoengn Minneapolis MN 55455 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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