The quantum-Hall-effect (QHE) occurs in topologically-ordered states of two-dimensional (2d) electron-systems in which an insulating bulk-state coexists with protected 1d conducting edge-states. Owing to a unique topologically imposed edge-bulk correspondence these edge-states are endowed with universal properties such as fractionally-charged quasiparticles and interference-patterns, which make them indispensable components for QH-based quantum-computation and other applications. The precise edge-bulk correspondence, conjectured theoretically in the limit of sharp edges, is difficult to realize in conventional semiconductor-based electron systems where soft boundaries lead to edge-state reconstruction. Using scanning-tunneling microscopy an...
Zigzag edges of graphene nanostructures host localized electronic states that are predicted to be sp...
Graphene subject to a strong, tilted magnetic field exhibits an insulator-metal transition tunable b...
The search of new means of generating and controlling topological states of matter is at the front o...
We study the electronic edge states of graphene in the quantum Hall regime. For non-interacting elec...
The quantum Hall (QH) effect, a topologically non-trivial quantum phase, expanded the concept of top...
The quantum Hall (QH) effect, a topologically non-trivial quantum phase, expanded the concept of top...
The quantum Hall (QH) effect, a topologically non-trivial quantum phase, expanded the concept of top...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
We study a continuum model of the interface of graphene and vacuum in the quantum hall regime via si...
Le graphène présente un gaz d’électrons bidimensionnel directement exposé au vide, donc accessible p...
Le graphène présente un gaz d’électrons bidimensionnel directement exposé au vide, donc accessible p...
The focus of this thesis is the dynamical symmetry breaking in monolayer and bilayer graphene in a m...
In this paper the topological approach to quantum Hall effects is carefully described. Commensurabil...
We study edge states in graphene systems where a bulk energy gap is opened by inversion symmetry bre...
We experimentally demonstrate formation of pointlike topological defects in the edge-state structure...
Zigzag edges of graphene nanostructures host localized electronic states that are predicted to be sp...
Graphene subject to a strong, tilted magnetic field exhibits an insulator-metal transition tunable b...
The search of new means of generating and controlling topological states of matter is at the front o...
We study the electronic edge states of graphene in the quantum Hall regime. For non-interacting elec...
The quantum Hall (QH) effect, a topologically non-trivial quantum phase, expanded the concept of top...
The quantum Hall (QH) effect, a topologically non-trivial quantum phase, expanded the concept of top...
The quantum Hall (QH) effect, a topologically non-trivial quantum phase, expanded the concept of top...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
We study a continuum model of the interface of graphene and vacuum in the quantum hall regime via si...
Le graphène présente un gaz d’électrons bidimensionnel directement exposé au vide, donc accessible p...
Le graphène présente un gaz d’électrons bidimensionnel directement exposé au vide, donc accessible p...
The focus of this thesis is the dynamical symmetry breaking in monolayer and bilayer graphene in a m...
In this paper the topological approach to quantum Hall effects is carefully described. Commensurabil...
We study edge states in graphene systems where a bulk energy gap is opened by inversion symmetry bre...
We experimentally demonstrate formation of pointlike topological defects in the edge-state structure...
Zigzag edges of graphene nanostructures host localized electronic states that are predicted to be sp...
Graphene subject to a strong, tilted magnetic field exhibits an insulator-metal transition tunable b...
The search of new means of generating and controlling topological states of matter is at the front o...