Intermittent rearrangements accompanying thermal fluctuations distinguish glasses from crystals
arXiv:2006.15082 · doi:10.1063/5.0021228
Abstract
It is a persistent problem in condensed matter physics that glasses exhibit vibrational and thermal properties that are markedly different from those of crystals. While recent works have advanced our understanding of vibrational excitations in glasses at the harmonic approximation limit, efforts in understanding finite-temperature anharmonic processes have been limited. It is well known that phonons in crystals couple through phonon-phonon interactions, an extremely efficient mechanism for anharmonic decay that is also important in glasses. Here, however, we show that an additional anharmonic channel of different origin emerges in the case of glasses, which induces intermittent rearrangements of particles. We have found that thermal vibrations in glasses trigger transitions among numerous different local minima of the energy landscape, which, however, are located within the same wide (meta)basin. These processes generate motions that are different from both diffusive and out-of-equilibrium aging dynamics. We suggest that the intermittent rearrangements accompanying thermal fluctuations are crucial features distinguishing glasses from crystals.
13 pages, 9 figures, 1 table
References in corpus (15)
- Modeling heat transport in crystals and glasses from a unified lattice-dynamical approach
- Marginal Stability in Structural, Spin and Electron Glasses
- Acoustic excitations and elastic heterogeneities in disordered solids
- Depletion of two-level systems in ultrastable computer-generated glasses
- Absence of Marginal Stability in a Structural Glass
- Boson peak dynamics of glassy glucose studied by integrated terahertz-band spectroscopy
- Nature of excitations and defects in structural glasses
- Elementary Excitation Modes in a Granular Glass above Jamming
- Sound damping in glasses: interplay between anharmonicities and elastic heterogeneities
- Experimental observation of the marginal glass phase in a colloidal glass
- Vibrational spectrum derived from the local mechanical response in disordered solids
- Impact of elastic heterogeneity on the propagation of vibrations at finite temperatures in glasses
- Anharmonic properties of vibrational excitations in amorphous solids
- Jamming and replica symmetry breaking of weakly disordered crystals
- Instabilities of Time-averaged Configurations in Thermal Glasses
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