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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Spatially heterogeneous dynamics and the Adam-Gibbs relation in the Dzugutov liquid
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Spatially heterogeneous dynamics and the Adam-Gibbs relation in the Dzugutov liquid

机译:Dzugutov液体中的空间异质动力学和Adam-Gibbs关系

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We perform molecular dynamics simulations of a one-component glass-forming liquid and use the inherent structure formalism to test the predictions of the Adam-Gibbs (AG) theory and to explore the possible connection between these predictions and spatially heterogeneous dynamics. We calculate the temperature dependence of the average potential energy of the equilibrium liquid and show that it obeys the Rosenfeld-Tarazona T-3/5 law for low temperature T, while the average inherent structure energy is found to be inversely proportional to temperature at low T, consistent with a Gaussian distribution of potential energy minima. We investigate the shape of the basins around the local minima in configuration space via the average basin vibrational frequency and show that the basins become slightly broader upon cooling. We evaluate the configurational entropy S-conf, a measure of the multiplicity of potential energy minima sampled by the system, and test the validity of the AG relation between S-conf and the bulk dynamics. We quantify the dynamically heterogeneous motion by analyzing the motion of particles that are mobile on short and intermediate time scales relative to the characteristic bulk relaxation time. These mobile particles move in one-dimensional "strings", and these strings form clusters with a well-defined average cluster size. The AG approach predicts that the minimum size of cooperatively rearranging regions (CRR) of molecules is inversely proportional to Sconf, and recently (Phys. Rev. Lett. 2003, 90, 085506) it has been shown that the mobile-particle clusters are consistent with the CRR envisaged by Adam and Gibbs. We test the possibility that the mobile-particle strings, rather than clusters, may describe the CRR of the Adam-Gibbs approach. We find that the strings also follow a nearly inverse relation with S-conf. We further show that the logarithm of the time when the strings and clusters are maximum, which occurs in the late-beta-relaxation regime of the intermediate scattering function, follows a linear relationship with 1/TSconf, in agreement with the AG prediction for the relationship between the configurational entropy and the characteristic time for the liquid to undergo a transition to a new configuration. Since strings are the basic elements of the clusters, we propose that strings are a more appropriate measure of the minimum size of a CRR that leads to configurational transitions. That the cluster size also has an inverse relationship with S-conf may be a consequence of the fact that the clusters are composed of strings.
机译:我们执行单组分玻璃形成液体的分子动力学模拟,并使用固有的结构形式主义来测试Adam-Gibbs(AG)理论的预测,并探索这些预测与空间异质动力学之间的可能联系。我们计算了平衡液体的平均势能的温度依赖性,并表明它在低温T时遵循Rosenfeld-Tarazona T-3 / 5定律,而在低温时平均固有结构能与温度成反比。 T,与势能极小值的高斯分布一致。我们通过平均盆地振动频率研究了配置空间中局部极小值附近盆地的形状,并显示出冷却后盆地变得略宽。我们评估构型熵S-conf,该量度是系统采样的最小势能的多重性,并测试了S-conf与体动力学之间AG关系的有效性。我们通过分析相对于特征体积弛豫时间在短时和中时尺度上移动的粒子的运动来量化动态异质运动。这些可移动的粒子以一维“字符串”移动,并且这些字符串形成具有明确定义的平均簇大小的簇。 AG方法预测分子的协同重排区域(CRR)的最小大小与Sconf成反比,最近(Phys。Rev. Lett。2003,90,085506)已证明,移动粒子簇是一致的Adam和Gibbs设想的CRR。我们测试了移动粒子字符串而不是簇可以描述Adam-Gibbs方法的CRR的可能性。我们发现字符串也与S-conf几乎成反比关系。我们进一步表明,在中间散射函数的后期β松弛形式中,出现字符串和簇最大的时间的对数,与1 / TSconf呈线性关系,这与AG的预测相一致。熵和液体过渡到新结构的特征时间之间的关系。由于字符串是群集的基本元素,因此我们建议字符串是导致配置转换的CRR最小大小的更合适度量。群集大小也与S-conf呈反比关系可能是群集由字符串组成的事实的结果。

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