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Spatially heterogeneous dynamics and string-like correlated motion in supercooled liquids and polymers.

机译:过冷液体和聚合物中的空间异质动力学和类似字符串的相关运动。

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摘要

Dense liquids above their glass transition exhibit spatially heterogeneous dynamics (SHD) in which regions within the liquid exhibit enhanced or diminished mobility relative to the average on some time scale. The spatially heterogeneous nature of local dynamics in supercooled liquids is fairly well established both experimentally and computationally. However, many questions remain concerning why and how this complex dynamics arises. Here we address these questions and present results of a detailed investigation of SHD in models of a one-component supercooled liquid and a low-molecular-weight polymer melt, via molecular dynamics simulation.; We find that particles or chain segments (monomers) with high mobility exhibit a correlated motion in which they move in a quasi-one dimensional "string-like" paths that aggregate into larger, ramified clusters. These dynamical clusters grow in size with decreasing temperature. The mean string and cluster sizes show a transient nature, with peaks at the late-beta/early-alpha relaxation time of the mode-coupling theory (MCT). The size distribution of the strings shows an exponential behavior, while that of the clusters approaches a power law near TMCT. We further investigate the microscopic details of local particle dynamics in order to understand the mechanisms by which particles move along string-like correlated paths. We find that the degree of coherence, i.e., the simulataneous motion by consecutive particles along a string, depends on the length of the string.; We also explore the thermodynamic behavior of the one-component liquid via the inherent structure formalism to study the connection between the dynamical strings and clusters we have investigated and the "cooperatively rearranging region (CRR)" of the Adam-Gibbs (AG) theory. We find that the average cluster size is linearly related to the inverse of the configurational entropy Sconf, as observed in simulated water. However, we also find a similar linear relationship between the average string size and configurational entropy.
机译:在其玻璃化转变温度以上的稠密液体表现出空间异质动力学(SHD),其中相对于某些时间范围内的平均值,液体中的区域显示出增强的或减弱的迁移率。在实验和计算上都很好地建立了过冷液体中局部动力学的空间异质性。然而,关于为什么以及如何产生这种复杂的动态,仍然存在许多问题。在这里,我们解决这些问题,并通过分子动力学模拟,对单组分过冷液体和低分子量聚合物熔体的模型中的SHD进行详细研究,并给出结果。我们发现具有高迁移率的粒子或链段(单体)表现出相关的运动,其中它们以准一维“串状”路径移动,并聚集成较大的分枝簇。这些动态簇的大小随着温度的降低而增长。平均串和簇的大小显示出短暂的性质,在模式耦合理论(MCT)的β-晚期/α-早期弛豫时间具有峰值。字符串的大小分布显示出指数行为,而簇的大小分布接近TMCT附近的幂律。我们进一步研究局部粒子动力学的微观细节,以了解粒子沿着类似字符串的相关路径运动的机制。我们发现相干的程度,即连续的粒子沿着弦的同时运动,取决于弦的长度。我们还通过固有的结构形式主义探索了单组分液体的热力学行为,以研究我们研究的动力串和簇与Adam-Gibbs(AG)理论的“合作重排区(CRR)”之间的联系。我们发现,在模拟水中观察到,平均簇大小与构型熵Sconf的倒数线性相关。但是,我们还在平均字符串大小和构型熵之间发现了相似的线性关系。

著录项

  • 作者

    Gebremichael, Yeshitila.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 279 p.
  • 总页数 279
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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