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Discontinuous nature of the repulsive-to-attractive colloidal glass transition

机译:排斥性至吸引性胶体玻璃化转变的不连续性

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摘要

In purely repulsive colloidal systems a glass transition can be reached by increasing the particle volume fraction beyond a certain threshold. The resulting glassy state is governed by configurational cages which confine particles and restrict their motion. A colloidal glass may also be formed by inducing attractive interactions between the particles. When attraction is turned on in a repulsive colloidal glass a re-entrant solidification ensues. Initially, the repulsive glass melts as free volume in the system increases. As the attraction strength is increased further, this weakened configurational glass gives way to an attractive glass in which motion is hindered by the formation of physical bonds between neighboring particles. In this paper, we study the transition from repulsive-to-attractive glasses using three-dimensional imaging at the single-particle level. We show how the onset of cage weakening and bond formation is signalled by subtle changes in local structure. We then demonstrate the discontinuous nature of the solid-solid transition, which is marked by a critical onset at a threshold bonding energy. Finally, we highlight how the interplay between bonding and caging leads to complex and heterogeneous dynamics at the microscale.
机译:在纯斥力胶体系统中,可以通过增加颗粒体积分数超过一定阈值来实现玻璃化转变。最终的玻璃态由配置笼子控制,该笼子限制颗粒并限制其运动。胶体玻璃还可以通过引起颗粒之间的吸引相互作用来形成。当在排斥性胶体玻璃中打开吸引力时,随之而来的是凹状凝固。最初,排斥玻璃随着系统中自由体积的增加而熔化。随着吸引力的进一步增加,这种弱化的结构玻璃被一种吸引人的玻璃所取代,该玻璃由于相邻颗粒之间形成物理键而阻碍了运动。在本文中,我们使用三维成像在单粒子水平上研究了从排斥性眼镜向有吸引力性眼镜的转变。我们展示了如何通过局部结构的细微变化来指示笼子减弱和键形成的开始。然后,我们证明了固-固转变的不连续性,其特征是临界结合能在临界开始时发生。最后,我们强调了键合和笼统之间的相互作用如何导致微观尺度上复杂而异质的动力学。

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