A powerful non-perturbative technique, which allows a direct evaluation of the ground state properties of an interacting electron gas in three dimensions, has been developed. In a unified approach, the low-, intermediate-, and high-density regions are considered. This technique is applied to three-dimensional (3D) systems with periodic electron density along one and two directions. The electronic and magnetic states of these systems are theoretically studied on the basis of the deformable jellium model, within a self-consistent Hartree-Fock approach. To determine the magnetic character of the 3D electron gas ground state, the paramagnetic and ferromagnetic energies are calculated and compared at low, intermediate, and high densities. As r(s...
The electronic state of a two-dimensional electron system (2DES) in the presence of a perpendicular ...
We probe the strength of electron-electron interactions at intermediate magnetic fields in the class...
We calculate, within a self-consistent Hartree-Fock approximation, the local density of states for d...
The energies of the paramagnetic and ferromagnetic states of the two-dimensional electron gas are ev...
Two transitions to localized charge density at intermediate and low densities are obtained for the t...
A corrugated and stable ground state is found for the two-dimensional electron gas in both the norma...
Variational and diffusion quantum Monte Carlo methods are employed to investigate the zero-temperatu...
The phase diagram of quasi-three-dimensional disordered electron gas for a strong magnetic field of ...
The electron gas is of great interest in condensed matter physics. It is a simple yet intriguing mo...
Ground stare properties of the two-dimensional electron gas are studied in the deformable jellium mo...
The self-consistent Hartree-Fock approximation and the deformable jellium model are used to describe...
We performed a theoretical study of the thermodynamic and magnetic properties of strongly correlated...
The thermodynamical properties of a two-dimensional electron gas (2DEG) in a magnetic field with an ...
This dissertation is divided into two parts. In the first half we study the electron-hole gas with t...
We present numerical and analytical evidence for the absence of a second-order phase transition of h...
The electronic state of a two-dimensional electron system (2DES) in the presence of a perpendicular ...
We probe the strength of electron-electron interactions at intermediate magnetic fields in the class...
We calculate, within a self-consistent Hartree-Fock approximation, the local density of states for d...
The energies of the paramagnetic and ferromagnetic states of the two-dimensional electron gas are ev...
Two transitions to localized charge density at intermediate and low densities are obtained for the t...
A corrugated and stable ground state is found for the two-dimensional electron gas in both the norma...
Variational and diffusion quantum Monte Carlo methods are employed to investigate the zero-temperatu...
The phase diagram of quasi-three-dimensional disordered electron gas for a strong magnetic field of ...
The electron gas is of great interest in condensed matter physics. It is a simple yet intriguing mo...
Ground stare properties of the two-dimensional electron gas are studied in the deformable jellium mo...
The self-consistent Hartree-Fock approximation and the deformable jellium model are used to describe...
We performed a theoretical study of the thermodynamic and magnetic properties of strongly correlated...
The thermodynamical properties of a two-dimensional electron gas (2DEG) in a magnetic field with an ...
This dissertation is divided into two parts. In the first half we study the electron-hole gas with t...
We present numerical and analytical evidence for the absence of a second-order phase transition of h...
The electronic state of a two-dimensional electron system (2DES) in the presence of a perpendicular ...
We probe the strength of electron-electron interactions at intermediate magnetic fields in the class...
We calculate, within a self-consistent Hartree-Fock approximation, the local density of states for d...