We report the application of a far-from-equilibrium statistical-mechanical theory to a nontrivial system with Newtonian interactions in continuous boundary-driven flow. By numerically time stepping the force-balance equations of a one-dimensional model fluid we measure occupancies and transition rates in simulation. The high-shear-rate simulation data reproduce the predicted invariant quantities, thus supporting the theory that a class of nonequilibrium steady states of matter, namely, sheared complex fluids, is amenable to statistical treatment from first principles
An exactly solvable, Hamiltonian-based model of many massive particles that are coupled by harmonic ...
In a recently proposed computational model of open molecular systems out of equilibrium the action ...
A novel non-equilibrium method for calculating the shear viscosity is presented. It reverses the cau...
We report the application of a far-from-equilibrium statistical-mechanical theory to a nontrivial sy...
Statistical mechanics is concerned with finding the macroscopic behaviour of a physical system given...
Equilibrium statistical mechanics has a remarkable property: the steady state probability distributi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.This electronic v...
Living systems, as well as most physical systems with promise in industry, technology and medicine, ...
Using nonequilibrium molecular dynamics simulations, we study the non-Newtonian rheology of a micros...
This thesis is made of two parts. In the first part, we study the rheology and nonequilibrium struct...
The standard nonequilibrium molecular dynamics algorithm for steady shear flow (SLLOD ) employs Lees...
Recently, a solution for collision-free trajectories in an N particle thermostatted hard-sphere syst...
We present a stochastic description of a model of N mutually interacting active particles in the pre...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
An exactly solvable, Hamiltonian-based model of many massive particles that are coupled by harmonic ...
In a recently proposed computational model of open molecular systems out of equilibrium the action ...
A novel non-equilibrium method for calculating the shear viscosity is presented. It reverses the cau...
We report the application of a far-from-equilibrium statistical-mechanical theory to a nontrivial sy...
Statistical mechanics is concerned with finding the macroscopic behaviour of a physical system given...
Equilibrium statistical mechanics has a remarkable property: the steady state probability distributi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.This electronic v...
Living systems, as well as most physical systems with promise in industry, technology and medicine, ...
Using nonequilibrium molecular dynamics simulations, we study the non-Newtonian rheology of a micros...
This thesis is made of two parts. In the first part, we study the rheology and nonequilibrium struct...
The standard nonequilibrium molecular dynamics algorithm for steady shear flow (SLLOD ) employs Lees...
Recently, a solution for collision-free trajectories in an N particle thermostatted hard-sphere syst...
We present a stochastic description of a model of N mutually interacting active particles in the pre...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
An exactly solvable, Hamiltonian-based model of many massive particles that are coupled by harmonic ...
In a recently proposed computational model of open molecular systems out of equilibrium the action ...
A novel non-equilibrium method for calculating the shear viscosity is presented. It reverses the cau...