We present accurate molecular dynamics calculations of the shear stress relaxation modulus of a simple atomic fluid over a wide range of densities. The high accuracy of the data enables us to study changes in the functional form of the shear relaxation modulus, and the properties that are derived from it, as the density is increased from the ideal gas limit to the upper limit of the fluid range. We show that the shear relaxation modulus of a dilute atomic fluid can be accurately described with a simple functional form consisting of a Gaussian plus a single exponential, whereas the dense fluid exhibits a more complicated relaxation function. The infinite-frequency shear modulus, the zero-shear viscosity, and the zero-shear first normal stres...
Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are use...
We compute the rheological properties of inelastic hard spheres in steady shear flow for general she...
In this paper the authors propose a novel method to study the local linear viscoelasticity of fluids...
We present accurate molecular dynamics calculations of the shear stress relaxation modulus of a simp...
The shear relaxation time, a key quantity in the theory of viscosity, is calculated for the Lennard\...
International audienceThe shear stress relaxation modulus G(t) may be determined from the shear stre...
Various fluid flow phenomena originate in the dynamics of the atoms that constitute the fluid. Study...
The time correlation functions (CF's) of diagonal and off-diagonal components of the stress tenser o...
We report the results of molecular dynamics simulations of stress relaxation tests in athermal visco...
We study the periodic time dependence of shear stress that occurs in a low- and a high-density fluid...
Recent simulation work has established that the widely accepted mode-coupling theory for the strain ...
We show that at high densities, as the system size decreases, liquid becomes able to permanently sus...
We present an extended analysis of the wavevector dependent shear viscosity of monatomic and diatomi...
Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are use...
International audienceFocusing on isotropic elastic networks we propose a simple-average expression ...
Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are use...
We compute the rheological properties of inelastic hard spheres in steady shear flow for general she...
In this paper the authors propose a novel method to study the local linear viscoelasticity of fluids...
We present accurate molecular dynamics calculations of the shear stress relaxation modulus of a simp...
The shear relaxation time, a key quantity in the theory of viscosity, is calculated for the Lennard\...
International audienceThe shear stress relaxation modulus G(t) may be determined from the shear stre...
Various fluid flow phenomena originate in the dynamics of the atoms that constitute the fluid. Study...
The time correlation functions (CF's) of diagonal and off-diagonal components of the stress tenser o...
We report the results of molecular dynamics simulations of stress relaxation tests in athermal visco...
We study the periodic time dependence of shear stress that occurs in a low- and a high-density fluid...
Recent simulation work has established that the widely accepted mode-coupling theory for the strain ...
We show that at high densities, as the system size decreases, liquid becomes able to permanently sus...
We present an extended analysis of the wavevector dependent shear viscosity of monatomic and diatomi...
Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are use...
International audienceFocusing on isotropic elastic networks we propose a simple-average expression ...
Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are use...
We compute the rheological properties of inelastic hard spheres in steady shear flow for general she...
In this paper the authors propose a novel method to study the local linear viscoelasticity of fluids...