论文标题

活跃浴中自组装胶体链的各向异性动力学

Anisotropic dynamics of a self-assembled colloidal chain in an active bath

论文作者

Aporvari, Mehdi Shafiei, Utkur, Mustafa, Saritas, Emine Ulku, Volpe, Giovanni, Stenhammar, Joakim

论文摘要

暴露于非平衡(主动)噪声的各向异性大分子在生物系统中非常普遍,因此对它们各向异性动力学的准确理解至关重要。在这里,我们实验研究了从液态空气界面上从磁性微粒组装的分离链的动力学,并在由运动大肠杆菌细菌组成的活动浴中移动。我们通过粒子跟踪研究了内链动力学和各向异性质量动力学。我们发现,与被动案例(即没有细菌的系统)相比,内部和质量中心动力学都大大增强,并且质量中心扩散系数$ d $具有非单调依赖性作为链长的函数。此外,我们的结果表明,与被动式情况相比,在活性浴中保留了$ d $平行与垂直方向之间的关系之间的关系,并且与文献中先前的发现相比,在平行方向上存在更高的扩散。我们认为,这种定性差异是由于实验几何和条件的细微差异以及远程流体动力相互作用和短期碰撞所起的相对作用。

Anisotropic macromolecules exposed to non-equilibrium (active) noise are very common in biological systems, and an accurate understanding of their anisotropic dynamics is therefore crucial. Here, we experimentally investigate the dynamics of isolated chains assembled from magnetic microparticles at a liquid-air interface and moving in an active bath consisting of motile E. coli bacteria. We investigate both the internal chain dynamics and the anisotropic center-of-mass dynamics through particle tracking. We find that both the internal and center-of-mass dynamics are greatly enhanced compared to the passive case, i.e., a system without bacteria, and that the center-of-mass diffusion coefficient $D$ features a non-monotonic dependence as a function of the chain length. Furthermore, our results show that the relationship between the components of $D$ parallel and perpendicular with respect to the direction of the applied magnetic field is preserved in the active bath compared to the passive case, with a higher diffusion in the parallel direction, in contrast to previous findings in the literature. We argue that this qualitative difference is due to subtle differences in the experimental geometry and conditions and the relative roles played by long-range hydrodynamic interactions and short-range collisions.

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