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The melting of stable glasses is governed by nucleation-and-growth dynamics

机译:稳定玻璃的熔化取决于成核和生长动力学

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We discuss the microscopic mechanisms by which low-temperature amorphous states, such as ultrastable glasses, transform into equilibrium fluids, after a sudden temperature increase. Experiments suggest that this process is similar to the melting of crystals, thus differing from the behaviour found in ordinary glasses. We rationalize these observations using the physical idea that the transformation process takes place close to a "hidden" equilibrium first-order phase transition, which is observed in systems of coupled replicas. We illustrate our views using simulation results for a simple two-dimensional plaquette spin model, which is known to exhibit a range of glassy behaviour. Our results suggest that nucleation-and-growth dynamics, as found near ordinary first-order transitions, is also the correct theoretical framework to analyse the melting of ultrastable glasses. Our approach provides a unified understanding of multiple experimental observations, such as propagating melting fronts, large kinetic stability ratios, and "giant" dynamic length scales. We also provide a comprehensive discussion of available theoretical pictures proposed in the context of ultrastable glass melting. Published by AIP Publishing.
机译:我们讨论了温度突然升高后低温非晶态(如超稳定玻璃)转变为平衡流体的微观机制。实验表明,此过程类似于晶体的熔化,因此与普通玻璃中的行为不同。我们使用转换过程接近于“隐藏”的平衡一阶相变的物理思想来合理化这些观察,这在耦合复制品的系统中可以观察到。我们使用一个简单的二维球状自旋模型的仿真结果来说明我们的观点,该模型已知表现出一系列玻化行为。我们的结果表明,在普通的一阶跃迁附近发现的成核和生长动力学也是分析超稳定玻璃熔化的正确理论框架。我们的方法提供了对多个实验观察结果的统一理解,例如传播的熔融前沿,较大的动力学稳定性比和“巨大的”动态长度尺度。我们还将对在超稳定玻璃熔化的背景下提出的可用理论图片进行全面讨论。由AIP Publishing发布。

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