Relaxation and physical aging in network glasses: a review
arXiv:1605.07403 · doi:10.1088/0034-4885/79/6/066504
Abstract
Recent progresses in the description of glassy relaxation and ageing are reviewed for the wide class of network-forming materials such as , GeSe, silicates (SiO-NaO) or borates (BO-LiO), all of them having an important usefulness in domestic, geological or optoelectronic applications. A brief introduction of the glass transition phenomenology is given, together with the salient features that are revealed both from theory and experiments. Standard experimental methods used for the characterization of the slowing down of the dynamics are reviewed. We then discuss the important role played by aspect of network topology and rigidity for the understanding of the relaxation of the glass transition, while also permitting analytical predictions of glass properties from simple and insightful models based on the network structure. We also emphasize the great utility of computer simulations which probe the dynamics at the molecular level, and permit to calculate various structure-related functions in connection with glassy relaxation and the physics of ageing which reveals the off-equilibrium nature of glasses. We discuss the notion of spatial variations of structure which leads to the picture of "{\em dynamic heterogeneities}", and recent results of this important topic for network glasses are also reviewed.
Review, 84 pages without figures
References in corpus (32)
- Theoretical perspective on the glass transition and amorphous materials
- Jamming at Zero Temperature and Zero Applied Stress: the Epitome of Disorder
- Universal nature of particle displacements close to glass and jamming transitions
- Growing length and time scales in glass forming liquids
- Spontaneous and induced dynamic fluctuations in glass-formers I: General results and dependence on ensemble and dynamics
- Excitation lines and the breakdown of Stokes-Einstein relations in supercooled liquids
- Spontaneous and induced dynamic correlations in glass-formers II: Model calculations and comparison to numerical simulations
- The Kinetic Activation-Relaxation Technique: A Powerful Off-lattice On-the-fly Kinetic Monte Carlo Algorithm
- Pressure Raman effects and internal stress in network glasses
- Non-affine response: jammed packings versus spring networks
- Intermediate phase, network demixing, boson and floppy modes, and compositional trends in glass transition temperatures of binary AsxS1-x system
- Structural and dynamical heterogeneity in a glass forming liquid
- Fragility and compressibility at the glass transition
- Dynamics and structure of an aging binary colloidal glass
- Self-organization with equilibration: a model for the intermediate phase in rigidity percolation
- Fast-ion conduction and flexibility of glassy networks
- Onset of rigidty in glasses: from random to self-organized networks
- Efficient measurement of linear susceptibilities in molecular simulations: Application to aging supercooled liquids
- Revisiting the slow dynamics of a silica melt using Monte Carlo simulations
- Superstrong nature of covalently bonded glass-forming liquids at select compositions
- First principles study of a sodium borosilicate glass-former II: The glass state
- Abrupt boundaries of intermediate phases and space filling in oxide glasses
- Crucial effect of glass processing and melt homogenization on the fragility of non-stoichiometric chalcogenides
- Self-organized criticality in the intermediate phase of rigidity percolation
- Noro-Frenkel scaling in short-range square well: A Potential Energy Landscape study
- Evolution of covalent networks under cooling: contrasting the rigidity window and jamming scenarios
- Relaxation dynamics in a transient network fluid with competing gel and glass phases
- Fragility and molar volumes of non-stoichiometric chalcogenides -- the crucial role of melt/glass homogenization
- Mode-Dependent nonequilibrium temperature in aging systems
- Designing heavy metal oxide glasses with threshold properties from network rigidity
- Is there a fractional breakdown of the Stokes-Einstein relation in Kinetically Constrained Models at low temperature?
- Two rigidity percolation transitions on binary Bethe networks and the intermediate phase in glass
Cited by in corpus (18)
- Holographic Phonons
- Active glasses
- Predicting Complex Relaxation Processes in Metallic Glass
- Predicting nonlinear physical aging of glasses from equilibrium relaxation via the material time
- Slow stretched-exponential and fast compressed-exponential relaxation from local event dynamics
- Time reversibility during the ageing of materials
- Fragile Glasses Associated with a Dramatic Drop of Entropy under Supercooling
- Distance-as-time in physical aging
- From sub-aging to hyper-aging in structural glasses
- Intrinsic features of an ideal glass
- The Angell Plot from the Potential Energy Landscape Perspective
- Non-linear physical aging of supercooled glycerol induced by large upward ideal temperature steps monitored through cooling experiments
- Physical aging of glasses of an organic semiconductor
- Linear-limit aging times of three monoalcohols
- Aging of glass-forming materials following a temperature jump
- Does mesoscopic elasticity control viscous slowing down in glassforming liquids?
- Single-parameter aging in the weakly nonlinear limit
- Large temperature-up-jump simulations of a binary Lennard-Jones system