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Critical scaling of icosahedral medium-range order in CuZr metallic glass-forming liquids

机译:CuZr金属玻璃形成液体中二十面体中程顺序的临界缩放

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摘要

The temperature evolution of icosahedral medium-range order formed by interpenetrating icosahedra in CuZr metallic glassforming liquids was investigated via molecular dynamics simulations. Scaling analysis based on percolation theory was employed, and it is found that the size distribution of clusters formed by the central atoms of icosahedra at various temperatures follows a very good scaling law with the cluster number density scaled by S−τ and the cluster size S scaled by |1 − Tc/T|−1/σ, respectively. Here Tc is scaling crossover-temperature. τ and σ are scaling exponents. The critical scaling behaviour suggests that there would be a structural phase transition manifested by percolation of locally favoured structures underlying the glass transition, if the liquid could be cooled slowly enough but without crystallization intervening. Furthermore, it is revealed that when icosahedral short-range order (ISRO) extends to medium-range length scale by connection, the atomic configurations of ISROs will be optimized from distorted ones towards more regular ones gradually, which significantly lowers the energies of ISROs and introduces geometric frustration simultaneously. Both factors make key impacts on the drastic dynamic slow-down of supercooled liquids. Our findings provide direct structure-property relationship for understanding the nature of glass transition.
机译:通过分子动力学模拟研究了二十碳六面体互穿二十面体在CuZr金属玻璃成形液中形成的二十面体中阶温度变化。采用基于渗流理论的尺度分析,发现二十碳六面体中心原子在不同温度下形成的团簇的尺寸分布遵循很好的尺度定律,其簇数密度由S 定标。 sup>和簇大小S分别按| 1-Tc / T | -1 /σ进行缩放。在此,Tc是标度转换温度。 τ和σ是缩放指数。临界的结垢行为表明,如果液体可以被充分缓慢地冷却而没有结晶的介入,则在玻璃化转变的基础上存在局部偏析的结构的渗滤将显示出结构相变。此外,揭示了当二十面体短程顺序(ISRO)通过连接扩展到中程长度尺度时,ISRO的原子构型将逐渐从扭曲的构型向更规则的构型优化,这显着降低了ISRO的能量。同时引入几何挫折感。这两个因素都对过冷液体的急剧动态减速产生关键影响。我们的发现为理解玻璃化转变的性质提供了直接的结构-性质关系。

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