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超高压下的玻璃态动力学

Glassy dynamics under superhigh pressure.

作者信息

Pronin A A, Kondrin M V, Lyapin A G, Brazhkin V V, Volkov A A, Lunkenheimer P, Loidl A

机构信息

General Physics Institute, Russian Academy of Sciences, Vavilov Street 38, Moscow 119991, Russia.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Apr;81(4 Pt 1):041503. doi: 10.1103/PhysRevE.81.041503. Epub 2010 Apr 14.

Abstract

Nearly all glass-forming liquids feature, along with the structural alpha-relaxation process, a faster secondary process (beta relaxation), whose nature belongs to the great mysteries of glass physics. However, for some of these liquids, no well-pronounced secondary relaxation is observed. A prominent example is the archetypical glass-forming liquid glycerol. In the present work, by performing dielectric spectroscopy under superhigh pressures up to 6 GPa, we show that in glycerol a significant secondary relaxation peak appears in the dielectric loss at P>3 GPa. We identify this beta relaxation to be of Johari-Goldstein type and discuss its relation to the excess wing. We provide evidence for a smooth but significant increase in glass-transition temperature and fragility on increasing pressure.

摘要

几乎所有形成玻璃的液体,除了结构α弛豫过程外,还具有一个更快的二级过程(β弛豫),其本质属于玻璃物理学的重大谜团。然而,对于其中一些液体,并未观察到明显的二级弛豫。一个突出的例子是典型的形成玻璃的液体甘油。在本工作中,通过在高达6吉帕的超高压下进行介电谱测量,我们表明在甘油中,当压力P>3吉帕时,介电损耗中出现了一个显著的二级弛豫峰。我们确定这种β弛豫属于乔哈里-戈尔茨坦类型,并讨论了它与过剩翼的关系。我们提供了证据,表明随着压力增加,玻璃化转变温度和脆性会平稳但显著地升高。

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