Simulated silica
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Summary
The results reveal the interplay among a number of phenomena, in particular, the relationship between the energy landscape and the fragile–to–strong crossover of the liquid dynamics; and the relation of both of these to the possibility of a liquid–liquid phase transition in the supercooled liquid.
- Type
- review
- Published
- 2004-12-22
- Cited by
- 6
- References
- 19
- OpenAlex
- https://openalex.org/W63213302
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11965768
Keywords
Supercooling, Statistical physics, Phase diagram, Crossover, Energy landscape
References
- Supercooled liquids and the glass transition
- The relationship between fragility, configurational entropy and the potential energy landscape of glass-forming liquids
- Static and dynamic properties of a viscous silica melt
- Melting‐Curve Maxima at High Pressure. II. Liquid Cesium. Resistivity, Hall Effect, and Composition of Molten Tellurium
- On the Temperature Dependence of Cooperative Relaxation Properties in Glass‐Forming Liquids
- Computer simulations of liquid silica: equation of state and liquid-liquid phase transition.
- Free energy and configurational entropy of liquid silica: fragile-to-strong crossover and polyamorphism.
- Inherent Structure Entropy of Supercooled Liquids
- Packing Structures and Transitions in Liquids and Solids
- Viscosity and configurational entropy of silicate melts
- Fragile-to-strong transition and polyamorphism in the energy landscape of liquid silica
- Polymorphic Phase Transitions in Liquids and Glasses
- Density Maxima in High-Pressure Supercooled Water and Liquid Silicon Dioxide
- Relaxation in liquids, polymers and plastic crystals — strong/fragile patterns and problems☆
- Signatures of distinct dynamical regimes in the energy landscape of a glass-forming liquid
- Force fields for silicas and aluminophosphates based on ab initio calculations.
- Phase diagram of silica from computer simulation.
- A Topographic View of Supercooled Liquids and Glass Formation
- Fragile-to-strong transition and polyamorphism in the energy landscape of liquid silica
- The relationship between fragility, configurational entropy and the potential energy landscape of glass-forming liquids
Cited by
- Computational studies of silica
- Modeling the self-assembly of ordered nanoporous materials
- Waterlike anomalies in the Bose–Hubbard model
- Quantum density anomaly in optically trapped ultracold gases
- A Simulation Study of the Amorphous Germania Structure up to 70 GPa
- Waterlike density anomaly in fermions
- Introduction
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