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Anomalous dynamics of intruders in a crowded environment of mobile obstacles

机译:在拥挤的移动障碍物环境中入侵者的异常动态

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摘要

Many natural and industrial processes rely on constrained transport, such as proteins moving through cells, particles confined in nanocomposite materials or gels, individuals in highly dense collectives and vehicular traffic conditions. These are examples of motion through crowded environments, in which the host matrix may retain some glass-like dynamics. Here we investigate constrained transport in a colloidal model system, in which dilute small spheres move in a slowly rearranging, glassy matrix of large spheres. Using confocal differential dynamic microscopy and simulations, here we discover a critical size asymmetry, at which anomalous collective transport of the small particles appears, manifested as a logarithmic decay of the density autocorrelation functions. We demonstrate that the matrix mobility is central for the observed anomalous behaviour. These results, crucially depending on size-induced dynamic asymmetry, are of relevance for a wide range of phenomena ranging from glassy systems to cell biology.
机译:许多自然和工业过程都依赖于受限的运输,例如蛋白质通过细胞移动,限制在纳米复合材料或凝胶中的颗粒,处于高密度集体中的个体以及车辆交通状况。这些是在拥挤的环境中运动的示例,在该环境中宿主基质可以保留一些类似玻璃的动力学。在这里,我们研究了胶体模型系统中的约束运输,其中稀薄的小球体在大球体的缓慢重新排列的玻璃状矩阵中运动。使用共聚焦微分动态显微镜和模拟,在这里我们发现了一个临界尺寸不对称,在该处出现了小颗粒的异常集体输运,表现为密度自相关函数的对数衰减。我们证明了矩阵迁移率对于观察到的异常行为至关重要。这些结果关键取决于尺寸引起的动态不对称性,与从玻璃状系统到细胞生物学的广泛现象相关。

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