We discuss the spatiotemporal behavior of local density and its relation to dynamical heterogeneity in a highly supercooled liquid by using molecular dynamics simulations of a binary mixture with different particle sizes in two dimensions. To trace voids heterogeneously existing with lower local densities, which move along with the structural relaxation, we employ the minimum local density for each particle in a time window whose width is set along with the structural relaxation time. Particles subject to free volumes correspond well to the configuration rearranging region of dynamical heterogeneity. While the correlation length for dynamical heterogeneity grows with temperature decrease, no growth in the correlation length of heterogeneity in the minimum local density distribution takes place. A comparison of these results with those of normal mode analysis reveals that superpositions of lower-frequency soft modes extending over the free volumes exhibit spatial correlation with the broken bonds. This observation suggests a possibility that long-ranged vibration modes facilitate the interactions between fragile regions represented by free volumes, to induce dynamical correlations at a large scale.
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14 November 2013
Research Article|
November 12 2013
Spatiotemporal heterogeneity of local free volumes in highly supercooled liquid Available to Purchase
Hayato Shiba;
1Institute for Solid State Physics,
University of Tokyo
, Chiba 277-8581, Japan
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Takeshi Kawasaki
2Department of Physics,
Kyoto University
, Kyoto 606-8502, Japan
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Hayato Shiba
1
Takeshi Kawasaki
2
1Institute for Solid State Physics,
University of Tokyo
, Chiba 277-8581, Japan
2Department of Physics,
Kyoto University
, Kyoto 606-8502, Japan
a)
Electronic mail: [email protected]
b)
Present address: Laboratoire Charles Coulomb, UMR 5221, CNRS and Université Montpellier 2, 34095 Montpellier, France.
J. Chem. Phys. 139, 184502 (2013)
Article history
Received:
April 22 2013
Accepted:
October 23 2013
Citation
Hayato Shiba, Takeshi Kawasaki; Spatiotemporal heterogeneity of local free volumes in highly supercooled liquid. J. Chem. Phys. 14 November 2013; 139 (18): 184502. https://doi.org/10.1063/1.4829442
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