The interplay between Brownian colloidal particles and their suspending fluid is well understood since Einstein’s seminal work of 1905: the fluid consists of atoms whose thermal motion gives rise to the Brownian motion of the colloids, while the colloids increase the viscosity of the suspension under shear. An alternative route to the viscosity, by exploring the thermal stress fluctuations in a quiescent fluid in the Green–Kubo formalism, however, reveals a marked inconsistency with the viscosity under shear. We show that an additional stress term, accounting for Brownian fluctuating stresslets and coupled to the Brownian forces by a generalized fluctuation-dissipation theorem, is required for the description of the stress and viscosity of ...
We consider the nonlinear rheology of dense colloidal suspensions under a time-dependent simple shea...
The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and...
A numerical study is presented on the intrinsic viscosities of sheared dilute suspensions of nonsphe...
The viscosity of a suspension of spherical Brownian particles is determined by Stokesian dynamics as...
A simple model for the rheological behavior of concentrated colloidal dispersions is developed. For ...
The non-equilibrium behaviour of concentrated colloidal dispersions is studied using Stokesian Dynam...
We present a mesoscopic hydrodynamic description of the dynamics of colloidal suspensions. We consid...
We discuss the nonlinear rheology of dense colloidal dispersions at the glass transition. A first pr...
The non-equilibrium behaviour of concentrated colloidal dispersions is studied by Stokesian Dynamics...
Starting from the stochastic equation for the density operator, we formulate the exact (instantaneou...
Abstract Brownian motion plays an important role in the dynamics of colloidal suspensions. It affect...
The fluctuation dissipation theorem is studied close to the glass transition in colloidal suspension...
While gels and glasses display similar time and temperature dependency in their stress-strain respon...
We present a detailed analysis of the fluctuation-dissipation theorem (FDT) close to the glass trans...
For highly non-uniformly flowing fluids, there are contributions to the stress related to spatial va...
We consider the nonlinear rheology of dense colloidal suspensions under a time-dependent simple shea...
The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and...
A numerical study is presented on the intrinsic viscosities of sheared dilute suspensions of nonsphe...
The viscosity of a suspension of spherical Brownian particles is determined by Stokesian dynamics as...
A simple model for the rheological behavior of concentrated colloidal dispersions is developed. For ...
The non-equilibrium behaviour of concentrated colloidal dispersions is studied using Stokesian Dynam...
We present a mesoscopic hydrodynamic description of the dynamics of colloidal suspensions. We consid...
We discuss the nonlinear rheology of dense colloidal dispersions at the glass transition. A first pr...
The non-equilibrium behaviour of concentrated colloidal dispersions is studied by Stokesian Dynamics...
Starting from the stochastic equation for the density operator, we formulate the exact (instantaneou...
Abstract Brownian motion plays an important role in the dynamics of colloidal suspensions. It affect...
The fluctuation dissipation theorem is studied close to the glass transition in colloidal suspension...
While gels and glasses display similar time and temperature dependency in their stress-strain respon...
We present a detailed analysis of the fluctuation-dissipation theorem (FDT) close to the glass trans...
For highly non-uniformly flowing fluids, there are contributions to the stress related to spatial va...
We consider the nonlinear rheology of dense colloidal suspensions under a time-dependent simple shea...
The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and...
A numerical study is presented on the intrinsic viscosities of sheared dilute suspensions of nonsphe...