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Postponing the dynamical transition density using competing interactions

机译:使用竞争相互作用推迟动态过渡密度

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Systems of dense spheres interacting through very short-ranged attraction are known from theory, simulations and colloidal experiments to exhibit dynamical reentrance. Their liquid state can thus be fluidized at higher densities than possible in systems with pure repulsion or with long-ranged attraction. A recent mean-field, infinite-dimensional calculation predicts that the dynamical arrest of the fluid can be further delayed by adding a longer-ranged repulsive contribution to the short-ranged attraction. We examine this proposal by performing extensive numerical simulations in a three-dimensional system. We first find the short-ranged attraction parameters necessary to achieve the densest liquid state, and then explore the parameter space for an additional longer-ranged repulsion that could further enhance reentrance. In the family of systems studied, no significant (within numerical accuracy) delay of the dynamical arrest is observed beyond what is already achieved by the short-ranged attraction. Possible explanations are discussed.
机译:从理论,模拟和胶体实验中已知通过非常短远程吸引的致密球体系统,以表现出动态再分率。因此,它们的液态可以在更高的密度下流化,而不是具有纯粹排斥或长距离吸引力的系统中的可能性。最近的平均场,无限尺寸的计算预测,通过向短程吸引力增加更长的排斥贡献,可以进一步延迟流体的动态阻滞。我们通过在三维系统中执行广泛的数值模拟来检查该提议。我们首先找到实现密度液体状态所需的短途吸引力参数,然后探索参数空间,以获得可能进一步增强重工的额外较长范围的排斥。在研究的系统系列中,不显着(在数值准确性范围内)延迟动态停滞的延迟超出了短途吸引力已经实现的。讨论了可能的解释。

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