We study a simple and versatile diatomic potential function coined to prevent crystallization in supercooled liquids. We show that the corresponding liquid doesn’t crystallize even with very long simulation runs at the lowest temperature that we can access with ergodic simulations. The medium displays the usual features of supercooled materials and a non-Arrhenius dependence of the diffusion coefficient and α relaxation time with temperature. We also observe the breakdown of the Stokes-Einstein relation at low temperatures
Various static and dynamic phenomena displayed by glass-forming liquids, particularly those near the...
We use molecular dynamic simulations to investigate the relation between the presence of packing def...
International audienceComputer simulations give precious insight into the microscopic behavior of di...
International audienceWe study a simple and versatile diatomic potential function coined to prevent ...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Using molecular dynamics simulations we investigate the finite-size dependence of the dynamical prop...
The understanding of complex condensed matter systems is an area of intense study. In this thesis, s...
We investigate the variation of the driving force for crystallization of a supercooled liquid along...
Despite its fundamental and technological importance, a microscopic understanding of the crystalliza...
When we cool down a liquid below the melting temperature, it can either crystallize or become superc...
We use large scale molecular dynamics simulations to investigate the relation between cooperativity ...
Phase change materials are of great interest as active layers in rewritable optical disks and novel ...
The breakdown of the Stokes-Einstein relation in supercooled liquids, which is the increase in the r...
Using molecular dynamics, we investigate the crystal nucleation in a Lennard-Jones fluid as a functi...
Below the melting temperature Tm, crystals are the stable phase of typical elemental or molecular sy...
Various static and dynamic phenomena displayed by glass-forming liquids, particularly those near the...
We use molecular dynamic simulations to investigate the relation between the presence of packing def...
International audienceComputer simulations give precious insight into the microscopic behavior of di...
International audienceWe study a simple and versatile diatomic potential function coined to prevent ...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Using molecular dynamics simulations we investigate the finite-size dependence of the dynamical prop...
The understanding of complex condensed matter systems is an area of intense study. In this thesis, s...
We investigate the variation of the driving force for crystallization of a supercooled liquid along...
Despite its fundamental and technological importance, a microscopic understanding of the crystalliza...
When we cool down a liquid below the melting temperature, it can either crystallize or become superc...
We use large scale molecular dynamics simulations to investigate the relation between cooperativity ...
Phase change materials are of great interest as active layers in rewritable optical disks and novel ...
The breakdown of the Stokes-Einstein relation in supercooled liquids, which is the increase in the r...
Using molecular dynamics, we investigate the crystal nucleation in a Lennard-Jones fluid as a functi...
Below the melting temperature Tm, crystals are the stable phase of typical elemental or molecular sy...
Various static and dynamic phenomena displayed by glass-forming liquids, particularly those near the...
We use molecular dynamic simulations to investigate the relation between the presence of packing def...
International audienceComputer simulations give precious insight into the microscopic behavior of di...