Through extensive state-of-the-art numerical simulations, we study the behavior of the dipolar hard sphere model at low temperatures and low densities, shedding light on a region of the phase diagram where a topological phase transition has long been thought to occur. We show that the system exhibits remarkable and unusual behaviors, like a very low density percolation locus and a stabilization of rings over chain structures. This unexpected abundance of rings comes from a delicate balance between the lower ring energy and the end-to-end chain entropy, and hints at a possible mechanism for the suppression of the gas–liquid phase separation. Our results open the possibility for refined theoretical approaches which, in addition to the previou...
We investigate, via numerical simulations, mean field, and density functional theories, the magnetic...
We report the combined results of molecular dynamics simulations and theoretical calculations concer...
The systems of molecules with a permanent dipole moment have solid phases with various crystal symme...
We investigate the structural chain-to-ring transition at low temperature in a gas of dipolar hard s...
We investigate the structural chain-to-ring transition at low temperature in a gas of dipolar hard s...
We report accurate calculations of the particle density of states in the dipolar hard-sphere fluid. ...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partition...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partitio...
In this contribution, we investigate the low-temperature, low-density behaviour of dipolar hard-sphe...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partition...
In this contribution, we investigate the low-temperature, low-density behaviour of dipolar hard-sphe...
We explore the equilibrium properties of a system composed of dipolar hard spheres. A new theory bas...
We explore the equilibrium properties of a system composed of dipolar hard spheres. A new theory bas...
We explore the equilibrium properties of a system composed of dipolar hard spheres. A new theory bas...
We report the combined results of molecular dynamics simulations and theoretical calculations concer...
We investigate, via numerical simulations, mean field, and density functional theories, the magnetic...
We report the combined results of molecular dynamics simulations and theoretical calculations concer...
The systems of molecules with a permanent dipole moment have solid phases with various crystal symme...
We investigate the structural chain-to-ring transition at low temperature in a gas of dipolar hard s...
We investigate the structural chain-to-ring transition at low temperature in a gas of dipolar hard s...
We report accurate calculations of the particle density of states in the dipolar hard-sphere fluid. ...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partition...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partitio...
In this contribution, we investigate the low-temperature, low-density behaviour of dipolar hard-sphe...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partition...
In this contribution, we investigate the low-temperature, low-density behaviour of dipolar hard-sphe...
We explore the equilibrium properties of a system composed of dipolar hard spheres. A new theory bas...
We explore the equilibrium properties of a system composed of dipolar hard spheres. A new theory bas...
We explore the equilibrium properties of a system composed of dipolar hard spheres. A new theory bas...
We report the combined results of molecular dynamics simulations and theoretical calculations concer...
We investigate, via numerical simulations, mean field, and density functional theories, the magnetic...
We report the combined results of molecular dynamics simulations and theoretical calculations concer...
The systems of molecules with a permanent dipole moment have solid phases with various crystal symme...