In this paper we present results for the wave-vector dependent shear viscosity for a model atomic fluid with short ranged repulsive interactions computed by molecular dynamics simulations. It is shown that the data can be fitted to two different simple functional forms over a large density range, namely, a function composed of two Gaussian terms and a Lorentzian type function with a variable wave-vector exponent. The parameters of both functional forms are found to obey simple density dependencies. While the first functional form has the advantage that the inverse Fourier transform can be found analytically, the Lorentzian type function fits the wave-vector dependence better over the range of wave vectors and densities studied here. The res...
The transverse momentum time autocorrelation functions and wavevector- and frequency-dependent shear...
In this thesis, we use nonequilibrium molecular dynamics (NEMD) methods to investigate the structura...
The paper gives a review of recent advances in theory and simulation of nonlocal transport in nanofl...
In this paper we present results for the wave-vector dependent shear viscosity for a model atomic fl...
In this thesis, we use equilibrium molecular dynamics (EMD) methods to investigate the nonlocal visc...
We present an extended analysis of the wavevector dependent shear viscosity of monatomic and diatomi...
Navier-Stokes-Fourier hydrodynamics breaks down on the order of molecular length and time scales. On...
The wave-vector dependent shear viscosities for butane and freely jointed chains have been determine...
The wave-vector dependent shear viscosities for butane and freely jointed chains have been determine...
Classical Navier-Stokes-Fourier hydrodynamic theory adequately describes the rheological properties ...
We use the nonlocal linear hydrodynamic constitutive model, proposed by Evans and Morriss @Statistic...
It has been suggested that for fluids in which the rate of strain varies appreciably over length sca...
In this Brief Report we investigate the multiscale hydrodynamical response of a liquid as a function...
A key problem in the prediction of the flow properties of highly confined (nano-scale) fluids is tha...
We present simulation results for the transport properties of inhomogeneous nonequilibrium atomic an...
The transverse momentum time autocorrelation functions and wavevector- and frequency-dependent shear...
In this thesis, we use nonequilibrium molecular dynamics (NEMD) methods to investigate the structura...
The paper gives a review of recent advances in theory and simulation of nonlocal transport in nanofl...
In this paper we present results for the wave-vector dependent shear viscosity for a model atomic fl...
In this thesis, we use equilibrium molecular dynamics (EMD) methods to investigate the nonlocal visc...
We present an extended analysis of the wavevector dependent shear viscosity of monatomic and diatomi...
Navier-Stokes-Fourier hydrodynamics breaks down on the order of molecular length and time scales. On...
The wave-vector dependent shear viscosities for butane and freely jointed chains have been determine...
The wave-vector dependent shear viscosities for butane and freely jointed chains have been determine...
Classical Navier-Stokes-Fourier hydrodynamic theory adequately describes the rheological properties ...
We use the nonlocal linear hydrodynamic constitutive model, proposed by Evans and Morriss @Statistic...
It has been suggested that for fluids in which the rate of strain varies appreciably over length sca...
In this Brief Report we investigate the multiscale hydrodynamical response of a liquid as a function...
A key problem in the prediction of the flow properties of highly confined (nano-scale) fluids is tha...
We present simulation results for the transport properties of inhomogeneous nonequilibrium atomic an...
The transverse momentum time autocorrelation functions and wavevector- and frequency-dependent shear...
In this thesis, we use nonequilibrium molecular dynamics (NEMD) methods to investigate the structura...
The paper gives a review of recent advances in theory and simulation of nonlocal transport in nanofl...