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Designing slower glasses by manipulating their local structure

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arxiv 1812.00764 v2 pith:TDOWHLLZ submitted 2018-12-03 cond-mat.soft

classification cond-mat.soft
keywords glasseslocaldynamicsresultsspecificstructurebinaryblocks
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Glasses remain an elusive and poorly understood state of matter. For example, it is not clear how we can design an efficient macroscopic glass former by tuning the properties of its microscopic building blocks. In this paper, we propose a simple directional colloidal model that reinforces the optimal icosahedral local structure of binary hard-sphere glasses. We show that only this specific symmetry results in a dramatic slowing down of the dynamics. Our results open the door to controlling the dynamics of dense glassy systems by selectively promoting specific local structural environments.

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  1. Tetrahedrality dictates dynamics in hard spheres

    cond-mat.soft 2019-08 conditional novelty 6.0 of 10

    The average number of tetrahedra per particle predicts diffusion time across a wide range of hard-sphere mixtures, and local tetrahedrality predicts single-particle mobility.

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