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Ordering of sedimenting paramagnetic colloids in a monolayer

机译:单层中沉积顺磁胶体的排序

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摘要

Sedimentation enables self-assembly of colloidal particles into crystalline structures, as needed for catalysis or photonics applications. Here we combine experiments, theory, and simulations to investigate the equilibrium structure of a colloidal monolayer with tunable interparticle repulsion via an applied externalmagnetic field.Experimental observations of the equilibrium structure are in excellent agreementwith density functional theory.Within a (zero-temperature) local density approximation, we derive a simple analytical expression that quantitatively captures the inhomogeneous ordering ranging from solid to liquidlike states. Monte Carlo simulations corroborate these findings and explore an even wider range of sedimentation conditions, thus providing a global view of the sedimentation-mediated ordering in colloidal monolayers with tunable long-ranged interparticle repulsions. Our findings shed further light on the classical sedimentation problem in colloidal science and related areas.
机译:沉淀使胶体颗粒的自组装能够根据催化或光子应用所需的晶体结构。在这里,我们将实验,理论和模拟结合,研究胶体单层的平衡结构通过施加的外部磁场进行可调谐颗粒排斥。平衡结构的实验观察是优秀的密度函数理论。在一个(零温度)本地时密度近似,我们得出了一种简单的分析表达,可以定量地捕获从固体到液体状状态的不均匀排序。 Monte Carlo模拟证实了这些发现,探索了更广泛的沉降条件,从而提供了在胶体单层中的沉降介导的订购的全球视图,具有可调谐的长距离颗粒痉挛。我们的调查结果进一步阐明了胶体科学和相关领域的古典沉降问题。

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