论文标题

超冷液体中的通用结构放松

Universal Structural Relaxation in Supercooled Liquids

论文作者

Pabst, Florian, Gabriel, Jan, Böhmer, Till, Weigl, Peter, Helbling, Andreas, Richter, Timo, Zourchang, Parvaneh, Walther, Thomas, Blochowicz, Thomas

论文摘要

深层冷冻液体中分子动力学的标志之一是弛豫函数的非指数特征。如果“通用”特征控制着与任何特定的分子结构或相互作用无关的玻璃动力学线形,那将是一个长期存在的问题。在本文中,我们通过全面比较去极化液体的去极化光散射和介电数据来阐明这一问题。非常不同系统的光散射光谱,例如氢键和范德华液体液体和离子系统几乎完全叠加并显示了结构放松的通用线形,大约遵循高频功率定律$ω^{ - 1/2} $。但是,介电损耗峰显示出更为个性的形状。在具有低偶极矩通用行为的系统中,在介电光谱中也观察到一般性的行为,而在强烈的偶极液体中,额外的互相关贡献掩盖了通用的结构弛豫。

One of the hallmarks of molecular dynamics in deeply supercooled liquids is the non-exponential character of the relaxation functions. It has been a long standing issue if 'universal' features govern the lineshape of glassy dynamics independent of any particular molecular structure or interaction. In the paper, we elucidate this matter by giving a comprehensive comparison of the spectral shape of depolarized light scattering and dielectric data of deeply supercooled liquids. The light scattering spectra of very different systems, e.g. hydrogen bonding and van der Waals liquids but also ionic systems, almost perfectly superimpose and show a generic lineshape of the structural relaxation, approximately following a high frequency power law $ω^{-1/2}$ . However, the dielectric loss peak shows a more individual shape. In systems with low dipole moment generic behavior is also observed in the dielectric spectra, while in strongly dipolar liquids additional crosscorrelation contributions mask the generic structural relaxation.

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