We present a model for a Chern insulator on the square lattice with complex first- and second-neighbor hoppings and a sublattice potential which displays an unexpectedly rich physics. Similarly to the celebrated Haldane model, the proposed Chern insulator has two topologically non-trivial phases with Chern numbers ±1. As a distinctive feature of the present model, phase transitions are associated to Dirac points that can move, merge and split in momentum space, at odds with Haldane's Chern insulator where Dirac points are bound to the corners of the hexagonal Brillouin zone. Additionally, the obtained phase diagram reveals a peculiar phase transition line between two distinct topological phases, in contrast to the Haldane model where such t...
We have studied the evolution of the topological properties of a band-engineered AB-stacked bilayer ...
Topological phases are phases of matter that are characterized by discrete quantities known as topol...
Graphene can be turned into a semimetal with broken time-reversal symmetry by adding a valley-depend...
We study topological properties and the topological phase transitions therein for a semi-Dirac Halda...
Paper, 8 Figures + Supplementary MaterialInternational audienceWe reveal a proximity effect between ...
Large Chern number phases in a Haldane model become possible if there is a multiplication of Dirac p...
We explore the physics of a Chern insulator subjected to a two-step Floquet drive. We analytically o...
International audienceWe develop a stochastic description of the topological properties in an intera...
16 pages, 34 figuresInternational audienceWe study four different models of Chern insulators in the ...
International audienceUltracold fermions trapped in a honeycomb optical lattice constitute a versati...
A Chern insulator is a building block of many topological quantum matters. Here, we discuss a nonsym...
Moving, merging, and annihilating Dirac points are studied theoretically in the tight-binding model ...
The Chern number is a topological invariant which characterizes Chern insulators in the translationa...
We investigate the role of disorder in a two-dimensional semi-Dirac material characterized by a line...
Based on a two-band Chern insulator with Chern number n = 2, we study the transport properties and t...
We have studied the evolution of the topological properties of a band-engineered AB-stacked bilayer ...
Topological phases are phases of matter that are characterized by discrete quantities known as topol...
Graphene can be turned into a semimetal with broken time-reversal symmetry by adding a valley-depend...
We study topological properties and the topological phase transitions therein for a semi-Dirac Halda...
Paper, 8 Figures + Supplementary MaterialInternational audienceWe reveal a proximity effect between ...
Large Chern number phases in a Haldane model become possible if there is a multiplication of Dirac p...
We explore the physics of a Chern insulator subjected to a two-step Floquet drive. We analytically o...
International audienceWe develop a stochastic description of the topological properties in an intera...
16 pages, 34 figuresInternational audienceWe study four different models of Chern insulators in the ...
International audienceUltracold fermions trapped in a honeycomb optical lattice constitute a versati...
A Chern insulator is a building block of many topological quantum matters. Here, we discuss a nonsym...
Moving, merging, and annihilating Dirac points are studied theoretically in the tight-binding model ...
The Chern number is a topological invariant which characterizes Chern insulators in the translationa...
We investigate the role of disorder in a two-dimensional semi-Dirac material characterized by a line...
Based on a two-band Chern insulator with Chern number n = 2, we study the transport properties and t...
We have studied the evolution of the topological properties of a band-engineered AB-stacked bilayer ...
Topological phases are phases of matter that are characterized by discrete quantities known as topol...
Graphene can be turned into a semimetal with broken time-reversal symmetry by adding a valley-depend...