Physical Review Letters · 2015 · 109 citations · 39 references
Shear StrainEngineeringExternal PerturbationsPhysicsHard Sphere GlassesMechanicsGlassy StatesMechanical EngineeringApplied PhysicsGlass TransitionGlass-forming LiquidGlass MaterialFunctional GlassRheologySolid MechanicsContinuum MechanicSoft MatterMechanics Of Materials
We consider the adiabatic evolution of glassy states under external perturbations. The formalism we use is very general. Here we use it for infinite-dimensional hard spheres where an exact analysis is possible. We consider perturbations of the boundary, i.e., compression or (volume preserving) shear strain, and we compute the response of glassy states to such perturbations: pressure and shear stress. We find that both quantities overshoot before the glass state becomes unstable at a spinodal point where it melts into a liquid (or yields). We also estimate the yield stress of the glass. Finally, we study the stability of the glass basins towards breaking into sub-basins, corresponding to a Gardner transition. We find that close to the dynamical transition, glasses undergo a Gardner transition after an infinitesimal perturbation.
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Supercooled liquids for pedestrians
Andrea Cavagna · Physics Reports · 2009 · 775 citations · Full text
Supercritical Flow, Supercooled Liquids, Supercritical Co2 +1
Organic Glasses with Exceptional Thermodynamic and Kinetic Stability
Stephen F. Swallen, Kenneth L. Kearns, Marie K. Mapes et al. · Science · 2006 · 774 citations