Tuning Pairwise Potential Can Control the Fragility of Glass-Forming Liquids: From Tetrahedral Network to Isotropic Soft Sphere Models
arXiv:1602.00829 · doi:10.1088/1742-5468/2016/07/074002
Abstract
We perform molecular dynamics simulations for a silica glass former model proposed by Coslovich and Pastore (CP) over a wide range of densities. The density variation can be mapped onto the change of the potential depth between Si and O interactions of the CP model. By reducing the potential depth (or increasing the density), the anisotropic tetrahedral network structure observed in the original CP model transforms into the isotropic structure with the purely repulsive soft-sphere potential. Correspondingly, the temperature dependence of the relaxation time exhibits the crossover from the Arrhenius to the super-Arrhenius behavior. Being able to control the fragility over a wide range by tuning the potential of a single model system helps us to bridge the gap between the network and isotropic glass formers and to obtain the insight into the underlying mechanism of the fragility. We study the relationship between the fragility and dynamical properties such as the magnitude of the Stokes-Einstein violation and the stretch exponent in the density correlation function. We also demonstrate that the peak of the specific heat systematically shifts as the density increases, hinting that the fragility is correlated with the hidden thermodynamic anomalies of the system.
24 pages, 29 figures, contribution to the special issue "The Role of Structure in Glassy and Jammed Systems"
References in corpus (19)
- Theoretical perspective on the glass transition and amorphous materials
- Supercooled Liquids for Pedestrians
- The role of local structure in dynamical arrest
- Understanding fragility in supercooled Lennard-Jones mixtures. I. Locally preferred structures
- Strong pressure-energy correlations in van der Waals liquids
- Interatomic repulsion softness directly controls the fragility of supercooled metallic melts
- Compressing nearly hard sphere fluids increases glass fragility
- Identification of long-lived clusters and their link to slow dynamics in a model glass former
- Locally preferred structures and many-body static correlations in viscous liquids
- The role of attractive forces in viscous liquids
- Finite size effects in the dynamics of glass-forming liquids
- Multiple length and time scales of dynamic heterogeneities in model glass-forming liquids: A systematic analysis of multi-point and multi-time correlations
- Dependence of the fragility of a glass former on the softness of interparticle interactions
- Tuning the fragility of a glassforming liquid by curving space
- Strong geometric frustration in model glassformers
- Energy Landscape, Anti-Plasticization and Polydispersity Induced Crossover of Heterogeneity in Supercooled Polydisperse Liquids
- A spherical model with directional interactions: I. Static properties
- The Origin of the Decoupling of Oxygen and Silicon Dynamics in Liquid Silica as Expressed by its Potential Energy Landscape
- Reduced strength and extent of dynamic heterogeneity in a strong glass former as compared to fragile glass formers
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- Isomorph theory of physical aging
- Connecting thermodynamic and dynamical anomalies of water-like liquid-liquid phase transition in the Fermi-Jagla model
- Classification of mobile- and immobile-molecule timescales for the Stokes-Einstein and Stokes-Einstein-Debye relations in supercooled water