A system of nano sized modomain ferromagnetic particle arranged in two-dimensional lattice is theoretically investigated. The basic aim of the investigation is to find the ground state of these types of models where the interaction is long-ranged and anisotropic. The numerical calculations show that for some lattices there is a number of degenerated states near the zero temperature. The ground state of these systems is basically of a complicated antiferromagnetic type
The energies of the paramagnetic and ferromagnetic states of the two-dimensional electron gas are ev...
We study the multiband mechanism to favour a ferromagnetic insulating ground state within a two-band...
The properties of two-dimensional ensembles of magnetic nanoparticles that interact by magnetic dip...
To investigate the influence of geometric frustration on the properties of low-energy configurations...
We prove that a system of discrete two-dimensional (2D) in-plane dipoles with four possible orientat...
An infinite triangular lattice of classical dipolar spins is usually considered to have a ferromagne...
Properties of many magnetic materials consisting of dipoles depend crucially on the nature of the di...
A two-dimensional (2D) system of classical dipoles free to rotate in a plane and fixed on an N × N s...
We show that the ground state of a system of magnetic dipoles, with no electric charge, is a ferroma...
The effects of the ground-state magnetization on the dynamical properties of a two dimensional (2D) ...
We study the ground state of a d-dimensional Ising model with both long-range (dipole-like) and near...
Extensive Monte Carlo simulations are used to investigate the stability of the ferromagnetic ground ...
We study the magnetic properties of itinerant quantum magnetic particles, described by a generalized...
We study a two-component mixture of fermionic dipoles in two dimensions at zero temperature, interac...
For most materials, electron spin coupling plays the dominant role in determining the arrangement of...
The energies of the paramagnetic and ferromagnetic states of the two-dimensional electron gas are ev...
We study the multiband mechanism to favour a ferromagnetic insulating ground state within a two-band...
The properties of two-dimensional ensembles of magnetic nanoparticles that interact by magnetic dip...
To investigate the influence of geometric frustration on the properties of low-energy configurations...
We prove that a system of discrete two-dimensional (2D) in-plane dipoles with four possible orientat...
An infinite triangular lattice of classical dipolar spins is usually considered to have a ferromagne...
Properties of many magnetic materials consisting of dipoles depend crucially on the nature of the di...
A two-dimensional (2D) system of classical dipoles free to rotate in a plane and fixed on an N × N s...
We show that the ground state of a system of magnetic dipoles, with no electric charge, is a ferroma...
The effects of the ground-state magnetization on the dynamical properties of a two dimensional (2D) ...
We study the ground state of a d-dimensional Ising model with both long-range (dipole-like) and near...
Extensive Monte Carlo simulations are used to investigate the stability of the ferromagnetic ground ...
We study the magnetic properties of itinerant quantum magnetic particles, described by a generalized...
We study a two-component mixture of fermionic dipoles in two dimensions at zero temperature, interac...
For most materials, electron spin coupling plays the dominant role in determining the arrangement of...
The energies of the paramagnetic and ferromagnetic states of the two-dimensional electron gas are ev...
We study the multiband mechanism to favour a ferromagnetic insulating ground state within a two-band...
The properties of two-dimensional ensembles of magnetic nanoparticles that interact by magnetic dip...