We investigate the structural chain-to-ring transition at low temperature in a gas of dipolar hard spheres (DHS). Due to the weakening of entropic contribution, ring formation becomes noticeable when the effective dipole–dipole magnetic interaction increases. It results in the redistribution of particles from usually observed flexible chains into flexible rings. The concentration (ρ) of DHS plays a crucial part in this transition: at a very low ρ only chains and rings are observed, whereas even a slight increase of the volume fraction leads to the formation of branched or defect structures. As a result, the fraction of DHS aggregated in defect-free rings turns out to be a non-monotonic function of ρ. The average ring size is found to be a s...
Systems whose magnetic response can be finely tuned using control parameters, such as temperature an...
In this contribution, we investigate the system of magnetic shifted dipoles using molecular dynamics...
The Monte Carlo technique is used to simulate a 3D dipolar hard-sphere system. The spatial and magn...
We investigate the structural chain-to-ring transition at low temperature in a gas of dipolar hard s...
Through extensive state-of-the-art numerical simulations, we study the behavior of the dipolar hard ...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partition...
We investigate, via numerical simulations, mean field, and density functional theories, the magnetic...
We investigate, via numerical simulations, mean field, and density functional theories, the magnetic...
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 employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partitio...
Iron, cobalt and nickel nanoparticles, grown in the gas phase, are known to arrange in chains and br...
In this contribution, we investigate the low-temperature, low-density behaviour of dipolar hard-sphe...
An experimental and theoretical study of the deformation and break-up process of rings, formed by ma...
An experimental and theoretical study of the deformation and break-up process of rings, formed by ma...
Systems whose magnetic response can be finely tuned using control parameters, such as temperature an...
In this contribution, we investigate the system of magnetic shifted dipoles using molecular dynamics...
The Monte Carlo technique is used to simulate a 3D dipolar hard-sphere system. The spatial and magn...
We investigate the structural chain-to-ring transition at low temperature in a gas of dipolar hard s...
Through extensive state-of-the-art numerical simulations, we study the behavior of the dipolar hard ...
We employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partition...
We investigate, via numerical simulations, mean field, and density functional theories, the magnetic...
We investigate, via numerical simulations, mean field, and density functional theories, the magnetic...
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 employ a method based on Monte Carlo grand-canonical simulations to precisely calculate partitio...
Iron, cobalt and nickel nanoparticles, grown in the gas phase, are known to arrange in chains and br...
In this contribution, we investigate the low-temperature, low-density behaviour of dipolar hard-sphe...
An experimental and theoretical study of the deformation and break-up process of rings, formed by ma...
An experimental and theoretical study of the deformation and break-up process of rings, formed by ma...
Systems whose magnetic response can be finely tuned using control parameters, such as temperature an...
In this contribution, we investigate the system of magnetic shifted dipoles using molecular dynamics...
The Monte Carlo technique is used to simulate a 3D dipolar hard-sphere system. The spatial and magn...