Networks generated from Voronoi tessellations of space are prototypes for topologically disordered systems. In order to assess the effects of random coordination on the statistical properties of energy spectra, we analyze tight-binding models for planar topologically disordered systems. To this end, the networks are generated by a simple topological model covering a wide range of naturally observed random structures. We find that the energy-level-spacing distributions exhibit level repulsion, similar to the spacings in the energetically disordered Anderson model of localization in the metallic regime
International audienceWe explore the interplay of disorder and topological phenomena in honeycomb la...
International audienceWe explore the interplay of disorder and topological phenomena in honeycomb la...
The spectral fluctuation of electrons in disordered systems are investigated using numerical calcula...
Networks generated from Voronoi tessellations of space are prototypes for topologically disordered s...
Networks generated from Voronoi tessellations of space are prototypes for topologically disordered s...
A self-consistent theory of localization in a tight-binding model of topologically disordered system...
We present analytically exact results to show that certain quasi–one-dimensional lattices, where the...
During the last few years, it became clear that the characterization of the nature of electron state...
We consider the transport of non-interacting electrons on two- and three-dimensional random Voronoi-...
Abstract. A brief review is given of the current understanding of the electronic structure, transpor...
We consider the transport of non-interacting electrons on two- and three-dimensional random Voronoi-...
Over the last decades, both band topology and Anderson transitions, as well as their interplay, have...
A self-consistent theory of localization in a tight-binding model of topologically disordered system...
The degree of electronic localization in disordered one-dimensional systems is discussed. The model ...
During the last few years, it became clear that the characterization of the nature of electron...
International audienceWe explore the interplay of disorder and topological phenomena in honeycomb la...
International audienceWe explore the interplay of disorder and topological phenomena in honeycomb la...
The spectral fluctuation of electrons in disordered systems are investigated using numerical calcula...
Networks generated from Voronoi tessellations of space are prototypes for topologically disordered s...
Networks generated from Voronoi tessellations of space are prototypes for topologically disordered s...
A self-consistent theory of localization in a tight-binding model of topologically disordered system...
We present analytically exact results to show that certain quasi–one-dimensional lattices, where the...
During the last few years, it became clear that the characterization of the nature of electron state...
We consider the transport of non-interacting electrons on two- and three-dimensional random Voronoi-...
Abstract. A brief review is given of the current understanding of the electronic structure, transpor...
We consider the transport of non-interacting electrons on two- and three-dimensional random Voronoi-...
Over the last decades, both band topology and Anderson transitions, as well as their interplay, have...
A self-consistent theory of localization in a tight-binding model of topologically disordered system...
The degree of electronic localization in disordered one-dimensional systems is discussed. The model ...
During the last few years, it became clear that the characterization of the nature of electron...
International audienceWe explore the interplay of disorder and topological phenomena in honeycomb la...
International audienceWe explore the interplay of disorder and topological phenomena in honeycomb la...
The spectral fluctuation of electrons in disordered systems are investigated using numerical calcula...