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Relaxation in glassforming liquids and amorphous solids

2000/09/15 by C. A. Angell, K. L. Ngai, Gregory B. McKenna +2 · 16 citations
Materials Science · Engineering · #Material Dynamics and Properties #Glass properties and applications #Metallic Glasses and Amorphous Alloys

paper · doi:10.1063/1.1286035

openalex publication_date 2000/09/15 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/30

Abstract

The field of viscous liquid and glassy solid dynamics is reviewed by a process of posing the key questions that need to be answered, and then providing the best answers available to the authors and their advisors at this time. The subject is divided into four parts, three of them dealing with behavior in different domains of temperature with respect to the glass transition temperature, Tg, and a fourth dealing with “short time processes.” The first part tackles the high temperature regime T>Tg, in which the system is ergodic and the evolution of the viscous liquid toward the condition at Tg is in focus. The second part deals with the regime T∼Tg, where the system is nonergodic except for very long annealing times, hence has time-dependent properties (aging and annealing). The third part discusses behavior when the system is completely frozen with respect to the primary relaxation process but in which secondary processes, particularly those responsible for “superionic” conductivity, and dopart mobility in amorphous silicon, remain active. In the fourth part we focus on the behavior of the system at the crossover between the low frequency vibrational components of the molecular motion and its high frequency relaxational components, paying particular attention to very recent developments in the short time dielectric response and the high Q mechanical response.

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