Naturally occuring or man-made systems displaying periodic spatial modulations of their properties on a nanoscale constitute superlattices. Such modulated structures are important both as prototypes of simple nanotechnological devices and as particular examples of emerging spatial inhomogeneity in interacting many-electron systems. Here we investigate the effect different types of modulation of the system parameters have on the ground-state energy and the charge-density distribution of the system. The superlattices are described by the inhomogeneous attractive Hubbard model, and the calculations are performed by density-functional and density-matrix renormalization group techniques. We find that modulations in local electric potentials are ...
International audienceThe interaction energy W [γ ] of the Hubbard model is regarded as a functional...
International audienceAttractive non-local interactions jointly with repulsive local interaction in ...
Density functional theory provides the basis for uncounted studies of ground-state properties of man...
We calculate ground-state energies and density distributions of Hubbard superlattices characterized ...
We discuss the interplay between electronic correlations and an underlying superlattice structure in...
A combined analytical and numerical study is performed of the mapping between strongly interacting f...
In recent years, a new type of 2D materials, moiré superlattice materials, has been made in laborato...
Describing many-body quantum systems has been an analytically and computationally challenging task s...
We consider fermions in one-dimensional superlattices (SL's), modeled by site-dependent Hubbard-U co...
Nanostructures with open shell transition metal or molecular constituents host often strong electron...
Cutting-edge technology needs small, ultrafast devices, operational in a wide range of regimes. This...
In condensed matter systems electron-electron interactions, negligible in everyday metals, can drama...
16th Annual International Conference of the Center for Nonlinear Studies, 13-17 may 1996, Los Alamos...
Recent developments in methods and computational power render it possible to realistically simulate ...
135 pagesIn this thesis, I discuss three projects that I participated in during my Ph.D.: electron c...
International audienceThe interaction energy W [γ ] of the Hubbard model is regarded as a functional...
International audienceAttractive non-local interactions jointly with repulsive local interaction in ...
Density functional theory provides the basis for uncounted studies of ground-state properties of man...
We calculate ground-state energies and density distributions of Hubbard superlattices characterized ...
We discuss the interplay between electronic correlations and an underlying superlattice structure in...
A combined analytical and numerical study is performed of the mapping between strongly interacting f...
In recent years, a new type of 2D materials, moiré superlattice materials, has been made in laborato...
Describing many-body quantum systems has been an analytically and computationally challenging task s...
We consider fermions in one-dimensional superlattices (SL's), modeled by site-dependent Hubbard-U co...
Nanostructures with open shell transition metal or molecular constituents host often strong electron...
Cutting-edge technology needs small, ultrafast devices, operational in a wide range of regimes. This...
In condensed matter systems electron-electron interactions, negligible in everyday metals, can drama...
16th Annual International Conference of the Center for Nonlinear Studies, 13-17 may 1996, Los Alamos...
Recent developments in methods and computational power render it possible to realistically simulate ...
135 pagesIn this thesis, I discuss three projects that I participated in during my Ph.D.: electron c...
International audienceThe interaction energy W [γ ] of the Hubbard model is regarded as a functional...
International audienceAttractive non-local interactions jointly with repulsive local interaction in ...
Density functional theory provides the basis for uncounted studies of ground-state properties of man...