International audienceThe ground state of charge neutral graphene under perpendicular magnetic field was predicted to be a quantum Hall topological insulator with a ferromagnetic order and spin-filtered, helical edge channels. In most experiments, however, an otherwise insulating state is observed and is accounted for by lattice-scale interactions that promote a broken-symmetry state with gapped bulk and edge excitations. We tuned the ground state of the graphene zeroth Landau level to the topological phase via a suitable screening of the Coulomb interaction with a SrTiO3 high-k dielectric substrate. We observed robust helical edge transport emerging at a magnetic field as low as 1 tesla and withstanding temperatures up to 110 kelvins over ...
We show that gated bilayer graphene hosts a strong topological insulator (TI) phase in the presence ...
The quantum Hall effect is widely used for the investigation of fundamental phenomena, ranging from ...
In the quantum Hall regime of graphene, antiferromagnetic and spin-polarized ferromagnetic states at...
Helical conductors with spin-momentum locking are promising platforms for Majorana fermions. Here we...
International audienceWe reexamine the nature of the ground states of bilayer graphene at odd intege...
Bilayer graphene, in the presence of a one-sided spin-orbit interaction (SOI) induced by a suitably ...
Motivated by a recent experiment (Sanchez-Yamagishi et al 2016 Nat. Nanotechnol. 214) reporting evid...
Electronic systems with multiple degenerate degrees of freedom can support a rich variety of broken ...
Room-temperature realization of macroscopic quantum phases is one of the major pursuits in fundament...
International audienceWe report an intriguing transition from the quantum spin Hall phase to the spi...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
Quantum Hall (QH) and quantum spin Hall (QSH) phases have very different edge states and, when going...
The fate of the low-temperature conductance at the charge-neutrality (Dirac) point in a single sheet...
Realization of the quantum spin Hall effect in graphene devices has remained an outstanding challeng...
© 2018 American Physical Society. We study the band structure of phases induced by depositing bilaye...
We show that gated bilayer graphene hosts a strong topological insulator (TI) phase in the presence ...
The quantum Hall effect is widely used for the investigation of fundamental phenomena, ranging from ...
In the quantum Hall regime of graphene, antiferromagnetic and spin-polarized ferromagnetic states at...
Helical conductors with spin-momentum locking are promising platforms for Majorana fermions. Here we...
International audienceWe reexamine the nature of the ground states of bilayer graphene at odd intege...
Bilayer graphene, in the presence of a one-sided spin-orbit interaction (SOI) induced by a suitably ...
Motivated by a recent experiment (Sanchez-Yamagishi et al 2016 Nat. Nanotechnol. 214) reporting evid...
Electronic systems with multiple degenerate degrees of freedom can support a rich variety of broken ...
Room-temperature realization of macroscopic quantum phases is one of the major pursuits in fundament...
International audienceWe report an intriguing transition from the quantum spin Hall phase to the spi...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
Quantum Hall (QH) and quantum spin Hall (QSH) phases have very different edge states and, when going...
The fate of the low-temperature conductance at the charge-neutrality (Dirac) point in a single sheet...
Realization of the quantum spin Hall effect in graphene devices has remained an outstanding challeng...
© 2018 American Physical Society. We study the band structure of phases induced by depositing bilaye...
We show that gated bilayer graphene hosts a strong topological insulator (TI) phase in the presence ...
The quantum Hall effect is widely used for the investigation of fundamental phenomena, ranging from ...
In the quantum Hall regime of graphene, antiferromagnetic and spin-polarized ferromagnetic states at...