Activated dynamics and effective temperature in a steady state sheared glass
Thomas K. Haxton, Andrea J. Liu
We conduct nonequilibrium molecular dynamics simulations to measure the shear stress, the average inherent structure energy, and the effective temperature of a sheared model glass as a function of bath temperature and shear strain rate. For above the glass transition temperature , the rheology approaches a Newtonian limit and approaches as the strain rate approaches zero, while for T<T_0, the shear stress approaches a yield stress and approaches a limiting value near . In the shear-dominated regime at high , high strain rate or at low , we find that the shear stress and the average inherent structure energy each collapse onto a single curve as a function of . This indicates that is controlling behavior in this regime.