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Three-Dimensional Direct Imaging of Structural Relaxation Near the Colloidal Glass Transition

机译:胶体玻璃化转变附近结构弛豫的三维直接成像

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Confocal microscopy was used to directly observe three-dimensional dynamics of particles in colloidal supercooled fluids and colloidal glasses. The fastest particles moved cooperatively; connected clusters of these mobile particles could be identified; and the cluster size distribution, structure, and dynamics were investigated. The characteristic cluster size grew markedly in the supercooled fluid as the glass transition was approached, in agreement with computer simulations; at the glass transition, however, there was a sudden drop in their size. The clusters of fast-moving particles were largest near the α-relax-ation time scale for supercooled colloidal fluids, but were also present, albeit with a markedly different nature, at shorter β-relaxation time scales, in both supercooled fluid and glass colloidal phases.
机译:共聚焦显微镜用于直接观察胶体过冷流体和胶体玻璃中颗粒的三维动力学。最快的粒子协同移动;这些移动粒子的连接簇可以被识别;并研究了簇的大小分布,结构和动力学。与计算机模拟相一致,随着接近玻璃化转变,过冷流体中的特征团簇尺寸显着增加。但是,在玻璃过渡时,其尺寸突然减小。对于过冷的胶体流体,快速移动的粒子簇在α-松弛时间尺度附近最大,但在较短的β-松弛时间尺度上,尽管性质明显不同,但在过冷流体和玻璃胶体中也存在阶段。

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