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Measurements of growing surface tension of amorphous–amorphous interfaces on approaching the colloidal glass transition

机译:接近胶态玻璃化转变时非晶-非晶界面生长表面张力的测量

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There is mounting evidence indicating that relaxation dynamics in liquids approaching their glass transition not only become increasingly cooperative, but the relaxing regions also become more compact in shape. Of the many theories of the glass transition, only the random first-order theory—a thermodynamic framework—anticipates the surface tension of relaxing regions to play a role in deciding both their size and morphology. However, owing to the amorphous nature of the relaxing regions, even the identification of their interfaces has not been possible in experiments hitherto. Here, we devise a method to directly quantify the dynamics of amorphous–amorphous interfaces in bulk supercooled colloidal liquids. Our procedure also helped unveil a non-monotonic evolution in dynamical correlations with supercooling in bulk liquids. We measure the surface tension of the interfaces and show that it increases rapidly across the mode-coupling area fraction. Our experiments support a thermodynamic origin of the glass transition.
机译:越来越多的证据表明,接近玻璃化转变的液体中的弛豫动力学不仅变得越来越协调,而且弛豫区域的形状也变得更加紧凑。在玻璃化转变的许多理论中,只有随机一阶理论(热力学框架)才能预测松弛区域的表面张力,从而在决定其大小和形态方面发挥作用。然而,由于松弛区的非晶性质,迄今在实验中甚至不可能识别它们的界面。在这里,我们设计了一种方法来直接量化散装过冷胶体液体中非晶-非晶界面的动力学。我们的程序还有助于揭示散装液体中过冷的动力学相关性的非单调演变。我们测量了界面的表面张力,并表明它在模式耦合面积分数中迅速增加。我们的实验支持玻璃化转变的热力学起源。

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