Physical Review Letters · 2000 · 186 citations · 22 references
Relaxation ProcessChemical KineticsEngineeringGlass-forming LiquidGlass MaterialSoft MatterGlass TransitionNumerical SimulationFunctional GlassAtomistic SimulationMaterials SciencePhysicsSlow Structural RelaxationPhysical ChemistrySolid MechanicsMonte Carlo SimulationPlasticityBinary Lennard-jones MixtureApplied PhysicsPolymer ModelingMechanics Of Materials
Slow structural relaxation ("aging") observed in many atomic, molecular, and polymeric glasses substantially alters their stress-strain relations and can produce a distinctive yield point. Using Monte Carlo simulation for a binary Lennard-Jones mixture, we have observed these phenomena and their cooling-rate dependences for the first time in an atomistic model system. We also observe that aging effects can be reversed by plastic deformation ("rejuvenation"), whereby the system is expelled from the vicinity of deep minima in its potential energy surface.
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Computer Simulation of Liquids
S. P, K. J · Journal of Molecular Liquids · 1988 · 15.8K citations
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