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Decoupling of rotational and translational diffusion in supercooled colloidal fluids

机译:过冷胶体流体中旋转扩散和平移扩散的解耦

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摘要

We use confocal microscopy to directly observe 3D translational and rotational diffusion of tetrahedral clusters, which serve as tracers in colloidal supercooled fluids. We find that as the colloidal glass transition is approached, translational and rotational diffusion decouple from each other: Rotational diffusion remains inversely proportional to the growing viscosity whereas translational diffusion does not, decreasing by a much lesser extent. We quantify the rotational motion with two distinct methods, finding agreement between these methods, in contrast with recent simulation results. The decoupling coincides with the emergence of non-Gaussian displacement distributions for translation whereas rotational displacement distributions remain Gaussian. Ultimately, our work demonstrates that as the glass transition is approached, the sample can no longer be approximated as a continuum fluid when considering diffusion.
机译:我们使用共聚焦显微镜直接观察四面体簇的3D平移和旋转扩散,它们作为胶体过冷流体的示踪剂。我们发现,随着胶体玻璃化转变的临近,平移和旋转扩散彼此解耦:旋转扩散与增长的粘度成反比,而平移扩散则不成正比,下降幅度要小得多。与最近的仿真结果相比,我们用两种不同的方法对旋转运动进行了量化,找到了这些方法之间的一致性。解耦与非平移位移分布的出现相吻合,而旋转位移分布仍为高斯分布。最终,我们的工作表明,随着接近玻璃化转变,考虑扩散时,样品不再可以近似为连续流体。

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