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arxiv: 1803.03327 · v2 · pith:DRSARU5Hnew · submitted 2018-03-08 · ❄️ cond-mat.soft · cond-mat.stat-mech

From Close-Packed to Topologically Close-Packed: Formation of Laves Phases in Moderately Polydisperse Hard-Sphere Mixtures

classification ❄️ cond-mat.soft cond-mat.stat-mech
keywords hard-sphereclose-packedmixturespolydispersityformationlavesparticlephases
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Particle size polydispersity can help to inhibit crystallization of the hard-sphere fluid into close-packed structures at high packing fractions and thus is often employed to create model glass-forming systems. Nonetheless, it is known that hard-sphere mixtures with modest polydispersity still have ordered ground states. Here, we demonstrate by computer simulation that hard-sphere mixtures with increased polydispersity fractionate on the basis of particle size, and a bimodal subpopulation favors formation of topologically close-packed C14 and C15 Laves phases in coexistence with a disordered phase. The generality of this result is supported by simulations of hard-sphere mixtures with particle-size distributions of four different forms.

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