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首页> 外文期刊>Journal of Physics. Condensed Matter >Dynamics-of supercooled liquid: excess wings, ss peaks, and rotation-translation coupling
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Dynamics-of supercooled liquid: excess wings, ss peaks, and rotation-translation coupling

机译:过冷液体的动力学:过多的机翼,ss峰和旋转和平移耦合

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摘要

Dielectric susceptibility spectra of liquids, cooled towards the liquid-glass transition often exhibit secondary structure in the frequency region between the alpha peak and the susceptibility minimum, in the form of either an 'excess wing' of a secondary peak - the Johari-Goldstein beta peak. Recently, Gotze and Sperl (2004 Phys. Rev. Lett. 92 105701.) showed that a simple schematic mode coupling theory model, which incorporates rotation-translation (RT) coupling, successfully describes the nearly logarithmic decay observed in optical Kerr effect data. This model also exhibits both excess wing and beta peak features, qualitatively resembling experimental dielectric data. It also predicts that the excess wing slope decreases with decreasing temperature and gradually evolves into a beta peak with increasing RT coupling. We therefore suggest that these features and their observed evolution with temperature may be consequences of RT coupling.
机译:朝着液-玻璃转变方向冷却的液体的介电敏感性谱通常在α峰和磁化率最小值之间的频率区域中显示出二级结构,其形式为次级峰的“多余的机翼”-Johari-Goldstein beta峰。最近,Gotze和Sperl(2004 Phys。Rev. Lett。92 105701.)表明,结合旋转-平移(RT)耦合的简单示意图模式耦合理论模型成功地描述了在光学Kerr效应数据中观察到的几乎对数衰减。该模型还具有多余的机翼和β峰特征,在质量上与实验电介质数据相似。它还预测,随着温度的降低,多余的机翼斜率会降低,而随着RT耦合的增加,机翼的坡度会逐渐演变为β峰。因此,我们建议这些特征及其随温度的变化可能是RT耦合的结果。

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