The equations of motion for the density modes of a fluid, derived from Newtons equations, are written as a linear generalized Langevin equation. The constraint imposed by the fluctuation-dissipation theorem is used to derive an exact form for the emory function. The resulting equations, solved under the assumption that the noise, and consequently density fluctuations, of the liquid are Gaussian distributed, are equivalent to the random phase approximation for the static structure factor and to the well-known ideal mode coupling theory (MCT) equations for the dynamics. This finding suggests that MCT is a theory of fluid dynamics that becomes exact in a mean-field limit
The self-consistent mode-coupling theory (MCT) has been used to analyze the heterogeneous dynamical ...
A set of nonlinear Langevin equations for fluctuations of the local conserved densities in a fluid u...
Generalized mode-coupling theory (GMCT) constitutes a systematically correctable, first-principles t...
PACS. 05.20.Jj – Statistical mechanics of classical fluids. PACS. 61.20.Gy – Theory and models of li...
We write equations of motion for density variables that are equivalent to Newton's equations. We the...
We write equations of motion for density variables that are equivalent to Newton’s equations. We the...
A formally exact set of equations is derived for the description of nonequilibrium phenomena in clas...
We consider a toy model for glassy dynamics of colloidal suspensions: a single Brownian particle dif...
Assuming an effective quadratic Hamiltonian, we derive an approximate, linear stochastic equation of...
Assuming an effective quadratic Hamiltonian, we derive an approximate, linear stochastic equation of...
Assuming an effective quadratic Hamiltonian, we derive an approximate, linear stochastic equation of...
We compare predictions from two familiar models of the metastable supercooled liquid, respectively, ...
International audienceAssuming an effective quadratic Hamiltonian, we derive an approximate, linear ...
Two fluctuating hydrodynamic models for the supercooled liquid are considered. The self-consistent m...
Two fluctuating hydrodynamic models for the supercooled liquid are considered. The self-consistent m...
The self-consistent mode-coupling theory (MCT) has been used to analyze the heterogeneous dynamical ...
A set of nonlinear Langevin equations for fluctuations of the local conserved densities in a fluid u...
Generalized mode-coupling theory (GMCT) constitutes a systematically correctable, first-principles t...
PACS. 05.20.Jj – Statistical mechanics of classical fluids. PACS. 61.20.Gy – Theory and models of li...
We write equations of motion for density variables that are equivalent to Newton's equations. We the...
We write equations of motion for density variables that are equivalent to Newton’s equations. We the...
A formally exact set of equations is derived for the description of nonequilibrium phenomena in clas...
We consider a toy model for glassy dynamics of colloidal suspensions: a single Brownian particle dif...
Assuming an effective quadratic Hamiltonian, we derive an approximate, linear stochastic equation of...
Assuming an effective quadratic Hamiltonian, we derive an approximate, linear stochastic equation of...
Assuming an effective quadratic Hamiltonian, we derive an approximate, linear stochastic equation of...
We compare predictions from two familiar models of the metastable supercooled liquid, respectively, ...
International audienceAssuming an effective quadratic Hamiltonian, we derive an approximate, linear ...
Two fluctuating hydrodynamic models for the supercooled liquid are considered. The self-consistent m...
Two fluctuating hydrodynamic models for the supercooled liquid are considered. The self-consistent m...
The self-consistent mode-coupling theory (MCT) has been used to analyze the heterogeneous dynamical ...
A set of nonlinear Langevin equations for fluctuations of the local conserved densities in a fluid u...
Generalized mode-coupling theory (GMCT) constitutes a systematically correctable, first-principles t...