The wave functions and energies of electrons in a two-dimensional Wigner lattice above the surface of a dielectric (He, Ar) are determined in the Hartree approximation and compared with the classical result. The lattice sum is performed with the Ewald transformation, which is modified to include the effective electron-electron interaction in a rather general form. The electron binding energies are enhanced compared to the point-electron results due to electron delocalization perpendicular and parallel to a dielectric surface. The perpendicular delocalization is strongly correlated with the lateral electron interaction
We analyze the polaron in a Wigner lattice, i.e., the interaction of an external electron with elect...
A jellium model of interacting electrons has been investigated using scaling arguments on the kineti...
Wigner crystal is the solid phase of strongly correlated electrons. The main theme of this thesis wo...
The wave functions and energies of electrons in a two-dimensional Wigner lattice above the surface o...
The dynamical properties (phonon spectrum, sound velocities, vibrational energy) and phase transitio...
The dynamical properties (phonon spectrum, sound velocities, vibrational energy) and phase transitio...
Properties of a two-dimensional Wigner lattice are analyzed taking into account delocalization of el...
Properties of a two-dimensional Wigner lattice are analyzed taking into account delocalization of el...
We propose a spectroscopic method to determine the existence of an electronic Wigner lattice at a gi...
We propose a spectroscopic method to determine the existence of an electronic Wigner lattice at a gi...
A two-dimensional electron system is expected to form a Wigner lattice at zero temperature but at ve...
A two-dimensional electron system is expected to form a Wigner lattice at zero temperature but at ve...
We find a set of simple variational hydrogeniclike wave functions for the three lowest image-potenti...
We find a set of simple variational hydrogeniclike wave functions for the three lowest image-potenti...
We analyze the polaron in a Wigner lattice, i.e., the interaction of an external electron with elect...
We analyze the polaron in a Wigner lattice, i.e., the interaction of an external electron with elect...
A jellium model of interacting electrons has been investigated using scaling arguments on the kineti...
Wigner crystal is the solid phase of strongly correlated electrons. The main theme of this thesis wo...
The wave functions and energies of electrons in a two-dimensional Wigner lattice above the surface o...
The dynamical properties (phonon spectrum, sound velocities, vibrational energy) and phase transitio...
The dynamical properties (phonon spectrum, sound velocities, vibrational energy) and phase transitio...
Properties of a two-dimensional Wigner lattice are analyzed taking into account delocalization of el...
Properties of a two-dimensional Wigner lattice are analyzed taking into account delocalization of el...
We propose a spectroscopic method to determine the existence of an electronic Wigner lattice at a gi...
We propose a spectroscopic method to determine the existence of an electronic Wigner lattice at a gi...
A two-dimensional electron system is expected to form a Wigner lattice at zero temperature but at ve...
A two-dimensional electron system is expected to form a Wigner lattice at zero temperature but at ve...
We find a set of simple variational hydrogeniclike wave functions for the three lowest image-potenti...
We find a set of simple variational hydrogeniclike wave functions for the three lowest image-potenti...
We analyze the polaron in a Wigner lattice, i.e., the interaction of an external electron with elect...
We analyze the polaron in a Wigner lattice, i.e., the interaction of an external electron with elect...
A jellium model of interacting electrons has been investigated using scaling arguments on the kineti...
Wigner crystal is the solid phase of strongly correlated electrons. The main theme of this thesis wo...