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From the Cover: Long-wavelength fluctuations and the glass transition in two dimensions and three dimensions

机译:从封面看:二维和三维的长波长波动和玻璃化转变

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摘要

Phase transitions significantly differ between 2D and 3D systems, but the influence of dimensionality on the glass transition is unresolved. We use microscopy to study colloidal systems as they approach their glass transitions at high concentrations and find differences between two dimensions and three dimensions. We find that, in two dimensions, particles can undergo large displacements without changing their position relative to their neighbors, in contrast with three dimensions. This is related to Mermin–Wagner long-wavelength fluctuations that influence phase transitions in two dimensions. However, when measuring particle motion only relative to their neighbors, two dimensions and three dimensions have similar behavior as the glass transition is approached, showing that the long-wavelength fluctuations do not cause a fundamental distinction between 2D and 3D glass transitions.
机译:2D和3D系统之间的相变明显不同,但是尺寸对玻璃化转变的影响尚未解决。我们使用显微镜研究胶体系统,因为它们在高浓度下接近其玻璃化转变,并发现了二维和三维之间的差异。我们发现,与三个维度相比,在两个维度中,粒子可以经历大的位移而不会改变它们相对于其相邻粒子的位置。这与影响二维的相变的Mermin-Wagner长波长波动有关。但是,当仅测量相对于其相邻粒子的粒子运动时,二维和三维的行为与接近玻璃化转变时具有相似的行为,这表明长波长波动不会引起2D和3D玻璃化转变之间的根本区别。

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