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Universal Nucleation Behavior of Sheared Systems

Amrita Goswami, Indranil Saha Dalal, Jayant K. Singh

2021Physical Review Letters23 citationsDOIOpen Access PDF

Abstract

Using molecular simulations and a modified classical nucleation theory, we study the nucleation, under flow, of a variety of liquids: different water models, Lennard-Jones, and hard sphere colloids. Our approach enables us to analyze a wide range of shear rates inaccessible to brute-force simulations. Our results reveal that the variation of the nucleation rate with shear is universal. A simplified version of the theory successfully captures the nonmonotonic temperature dependence of the nucleation behavior, which is shown to originate from the violation of the Stokes-Einstein relation.

Topics & Concepts

NucleationMaterials scienceStatistical physicsPhysicsThermodynamicsMaterial Dynamics and PropertiesComposite Material MechanicsGranular flow and fluidized beds
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