Large Chern number phases in a Haldane model become possible if there is a multiplication of Dirac points in the underlying graphene model. This is realized by considering long-distance hopping integrals. Through variation of these integrals, it is possible to arrive at supermerging band touchings, which up to N7 graphene are unique in parameter space. They result from the synchronized motion of all supplementary Dirac points into the regular +/-K points of graphene. The energy dispersion power law is usually larger than the topological charge associated with them. Moreover, adding distant-neighbor hoppings in the Haldane mass allows one to sweep large Chern number phases in the topological insulator.Immunocapteur à ondes de Love ultra-sens...
Moving, merging, and annihilating Dirac points are studied theoretically in the tight-binding model ...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
We study the many-body physics in twisted bilayer graphene coupled to periodic driving of a circular...
Large Chern number phases in a Haldane model become possible if there is a multiplication of Dirac p...
Paper, 8 Figures + Supplementary MaterialInternational audienceWe reveal a proximity effect between ...
We present a model for a Chern insulator on the square lattice with complex first- and second-neighb...
We study the band structure and the density of states of graphene in the presence of a next-to-neare...
We study topological properties and the topological phase transitions therein for a semi-Dirac Halda...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
Abstract We propose two generalized Haldane models on laser-coupling optical lattices. Laser-assiste...
10 págs.; 4 figs.; Open Access funded by Creative Commons Atribution Licence 3.0We study the Haldan...
We provide a setup for generalizing the two-dimensional pseudospin S = 1/2 Dirac equation, arising i...
24 pages, 16 figures, minor modifications and references addedInternational audienceThe realization ...
Graphene can be turned into a semimetal with broken time-reversal symmetry by adding a valley-depend...
We show that, at sufficiently large strength of the long-range Coulomb interaction, a mass term brea...
Moving, merging, and annihilating Dirac points are studied theoretically in the tight-binding model ...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
We study the many-body physics in twisted bilayer graphene coupled to periodic driving of a circular...
Large Chern number phases in a Haldane model become possible if there is a multiplication of Dirac p...
Paper, 8 Figures + Supplementary MaterialInternational audienceWe reveal a proximity effect between ...
We present a model for a Chern insulator on the square lattice with complex first- and second-neighb...
We study the band structure and the density of states of graphene in the presence of a next-to-neare...
We study topological properties and the topological phase transitions therein for a semi-Dirac Halda...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
Abstract We propose two generalized Haldane models on laser-coupling optical lattices. Laser-assiste...
10 págs.; 4 figs.; Open Access funded by Creative Commons Atribution Licence 3.0We study the Haldan...
We provide a setup for generalizing the two-dimensional pseudospin S = 1/2 Dirac equation, arising i...
24 pages, 16 figures, minor modifications and references addedInternational audienceThe realization ...
Graphene can be turned into a semimetal with broken time-reversal symmetry by adding a valley-depend...
We show that, at sufficiently large strength of the long-range Coulomb interaction, a mass term brea...
Moving, merging, and annihilating Dirac points are studied theoretically in the tight-binding model ...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
We study the many-body physics in twisted bilayer graphene coupled to periodic driving of a circular...