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Regulating wave front dynamics from the strongly discrete to the continuum limit in magnetically driven colloidal systems

机译:调节磁驱动胶体系统中从强离散到连续极限的波前动力学

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摘要

The emergence of wave fronts in dissipative driven systems is a fascinating phenomenon which can be found in a broad range of physical and biological disciplines. Here we report the direct experimental observation of discrete fronts propagating along chains of paramagnetic colloidal particles, the latter propelled above a traveling wave potential generated by a structured magnetic substrate. We develop a rigorously reduced theoretical framework and describe the dynamics of the system in terms of a generalized one-dimensional dissipative Frenkel-Kontorova model. The front dynamics is explored in a wide range of field parameters close to and far from depinning, where the discrete and continuum limits apply. We show how symmetry breaking and finite size of chains are used to control the direction of front propagation, a universal feature relevant to different systems and important for real applications.
机译:耗散驱动系统中波阵面的出现是一个令人着迷的现象,可以在广泛的物理和生物学学科中找到。在这里,我们报告了沿顺磁胶体粒子链传播的离散前沿的直接实验观察,后者在结构化磁性基质产生的行波电势上方推进。我们建立了严格简化的理论框架,并根据广义一维耗散Frenkel-Kontorova模型描述了系统的动力学。在离散和连续限制适用的接近固定销钉的领域中,可以在广泛的现场参数中探索前部动力学。我们展示了对称断裂和链的有限大小如何用于控制前传播的方向,这是与不同系统相关的通用功能,对实际应用很重要。

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