We report the analysis in the wave vector space of the density correlator of a Lennard-Jones binary mixture confined in a disordered matrix of soft spheres upon supercooling. In spite of the strong confining medium the behavior of the mixture is consistent with the mode-coupling theory predictions for bulk supercooled liquids. The relaxation times extracted from the fit of the density correlator to the stretched exponential function follow a unique power law behavior as a function of wave vector and temperature. The von Schweidler scaling properties are valid for an extended wave vector range around the peak of the structure factor. The parameters extracted in the present work are compared with the bulk values obtained in literature
The dynamics of Lennard-Jones fluid is studied through extended mode coupling theory (MCT) with the ...
Binary liquids are known to be better glass formers than one component liquids. To understand this, ...
We write equations of motion for density variables that are equivalent to Newton's equations. We the...
Dynamic properties of a liquid Lennard-Jones binary mixture embedded in an off-lattice matrix of sof...
Dynamical properties of a Lennard-Jones binary mixture embedded in an off-lattice matrix of soft sph...
Molecular-dynamics simulations of a Lennard-Jones binary mixture confined in a disordered array of s...
Molecular-dynamics simulations of a Lennard-Jones binary mixture confined in a disordered array of s...
Dynamical properties of a supercooled Lennard-Jones binary mixture in a disordered array of soft sph...
We present results of molecular dynamics simulations performed on a Lennard-Jones liquid binary mixt...
Molecular dynamics simulations are performed on a Lennard Jones binary mixture confined in off latti...
We investigate the structural relaxation in a binary fluid over the time scales of β-relaxation regi...
We present a quantitative comparison at equivalent thermodynamical conditions of bulk and confined d...
We present a quantitative comparison at equivalent thermodynamical conditions of bulk and confined d...
The dynamics of Lennard–Jones fluid is studied through extended mode coupling theory (MCT) with the ...
The alpha-master functions of the mode coupling theory for a binary soft-sphere mixture are presente...
The dynamics of Lennard-Jones fluid is studied through extended mode coupling theory (MCT) with the ...
Binary liquids are known to be better glass formers than one component liquids. To understand this, ...
We write equations of motion for density variables that are equivalent to Newton's equations. We the...
Dynamic properties of a liquid Lennard-Jones binary mixture embedded in an off-lattice matrix of sof...
Dynamical properties of a Lennard-Jones binary mixture embedded in an off-lattice matrix of soft sph...
Molecular-dynamics simulations of a Lennard-Jones binary mixture confined in a disordered array of s...
Molecular-dynamics simulations of a Lennard-Jones binary mixture confined in a disordered array of s...
Dynamical properties of a supercooled Lennard-Jones binary mixture in a disordered array of soft sph...
We present results of molecular dynamics simulations performed on a Lennard-Jones liquid binary mixt...
Molecular dynamics simulations are performed on a Lennard Jones binary mixture confined in off latti...
We investigate the structural relaxation in a binary fluid over the time scales of β-relaxation regi...
We present a quantitative comparison at equivalent thermodynamical conditions of bulk and confined d...
We present a quantitative comparison at equivalent thermodynamical conditions of bulk and confined d...
The dynamics of Lennard–Jones fluid is studied through extended mode coupling theory (MCT) with the ...
The alpha-master functions of the mode coupling theory for a binary soft-sphere mixture are presente...
The dynamics of Lennard-Jones fluid is studied through extended mode coupling theory (MCT) with the ...
Binary liquids are known to be better glass formers than one component liquids. To understand this, ...
We write equations of motion for density variables that are equivalent to Newton's equations. We the...