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Coupling of caged dynamics to the Johari-Goldstein β-relaxation and α-relaxation in metallic glasses

  • Northwestern Polytechnical University Xian
  • National Research Council of Italy

科研成果: 期刊稿件文章同行评审

摘要

Caged dynamics is the process that precedes the Johari-Goldstein (JG) β-relaxation and the structural α-relaxation. It is exclusively observed in the glassy state in experiments carried out at sufficiently high frequency or short time such that even the JGβ relaxation is too slow to be observed. Remarkably and generally observed in many molecular and polymeric glass-formers, the caged dynamics changes its temperature dependence on crossing two temperatures. The lower one had been identified with the JGβ glass transition temperature T determined by either adiabatic calorimetry and positronium annihilation lifetime spectroscopy or by the relaxation time τβ(T) reaching 102 or 103 s. The higher one is the nominal glass transition temperature T. This ubiquitous property of caged dynamics originates from its coupling to the JGβ relaxation and the α-relaxation as predicted by the Coupling Model. This fundamentally important property has never been found completely in metallic glasses by conventional mechanical modulus measurements because the probe frequencies are too low. There are two exceptions where the mechanical modulus of metallic glasses was measured at much higher frequencies, and the data should reveal the changes of the caged dynamics at T and T, as found before in molecular and polymeric glasses. However, the property was not revealed from the experimental data in these two works and subsequently by others. This is due to the concept of caged dynamics and its coupling to JGβ and α relaxations are uncommon in metallic glasses research. In this paper, we revisit these two critical experimental data to identify the caged dynamics and show the changes of its temperature dependence on crossing T and T. Thus, like molecular and polymeric glasses, caged dynamics in metallic glasses is also coupled to the JGβ and the α relaxations.

源语言英语
期刊论文编号124286
期刊Journal of Non-Crystalline Solids
690
DOI
出版状态已出版 - 1 10月 2026

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