85 citations · 313 across the 7 of their papers we have counts for
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Geometric phase in Stückelberg interferometry
Lih-King Lim, Jean-Noël Fuchs, Gilles Montambaux
We study the time evolution of a two-dimensional quantum particle exhibiting an energy spectrum, made of two bands, with two Dirac cones, as e.g. in the band structure of a honeyco…
Orbital magnetism of coupled bands models
A. Raoux, F. Piéchon, J. N. Fuchs +1
We develop a gauge-independent perturbation theory for the grand potential of itinerant electrons in two-dimensional tight-binding models in the presence of a perpendicular magneti…
Dirac Fermions in condensed matter and beyond
Mark O. Goerbig, Gilles Montambaux
This review aims at a theoretical discussion of Dirac points in two-dimensional systems. Whereas Dirac points and Dirac fermions are prominent low-energy electrons in graphene (two…
Manipulation of edge states in microwave artificial graphene
Matthieu Bellec, Ulrich Kuhl, Gilles Montambaux +1
Edge states are one important ingredient to understand transport properties of graphene nanoribbons. We study experimentally the existence and the internal structure of edge states…
Ergodic vs diffusive decoherence in mesoscopic devices
Thibaut Capron, Christophe Texier, Gilles Montambaux +3
We report on the measurement of phase coherence length in a high mobility two-dimensional electron gas patterned in two different geometries, a wire and a ring. The phase coherence…
WKB analysis of edge states in graphene in a strong magnetic field
Pierre Delplace, Gilles Montambaux
We investigate the fine structure of the edge states energy spectrum for zigzag and armchair ribbons of graphene in a strong magnetic field. At low energy, the spectra can be descr…