International audienceResearch on graphene has revealed remarkable phenomena arising in the honeycomb lattice. However, the quantum spin Hall effect predicted at the K point could not be observed in graphene and other honeycomb structures of light elements due to an insufficiently strong spin-orbit coupling. Here we show theoretically that 2D honeycomb lattices of HgTe can combine the effects of the honeycomb geometry and strong spin-orbit coupling. The conduction bands, experimentally accessible via doping, can be described by a tight-binding lattice model as in graphene, but including multi-orbital degrees of freedom and spin-orbit coupling. This results in very large topological gaps (up to 35 meV) and a flattened band detached from the ...
We show that a magnetic insulating state with nonzero spin chirality is realized in a quarter-doped ...
We explore the possibility of inducing a topological insulator phase in a honeycomb lattice lacking ...
Physical phenomena driven by topological properties, such as the quantum Hall effect, have the appea...
International audienceResearch on graphene has revealed remarkable phenomena arising in the honeycom...
Research on graphene has revealed remarkable phenomena arising in the honeycomb lattice. However, th...
peer reviewedResearch on graphene has revealed remarkable phenomena arising in the honeycomb lattice...
Research on graphene has revealed remarkable phenomena arising in the honeycomb lattice. However, th...
We summarize recent theoretical works on artificial graphene realized by honeycomb lattices of semic...
We summarize recent theoretical works on artificial graphene realized by honeycomb lattices of semic...
International audienceThe recent experimental realization of self-assembled honeycomb superlattices ...
International audienceThe recent experimental realization of self-assembled honeycomb superlattices ...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
We investigate a new class of ternary materials such as LiAuSe and KHgSb with a honeycomb structure ...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
We investigate a new class of ternary materials such as LiAuSe and KHgSb with a honeycomb structure ...
We show that a magnetic insulating state with nonzero spin chirality is realized in a quarter-doped ...
We explore the possibility of inducing a topological insulator phase in a honeycomb lattice lacking ...
Physical phenomena driven by topological properties, such as the quantum Hall effect, have the appea...
International audienceResearch on graphene has revealed remarkable phenomena arising in the honeycom...
Research on graphene has revealed remarkable phenomena arising in the honeycomb lattice. However, th...
peer reviewedResearch on graphene has revealed remarkable phenomena arising in the honeycomb lattice...
Research on graphene has revealed remarkable phenomena arising in the honeycomb lattice. However, th...
We summarize recent theoretical works on artificial graphene realized by honeycomb lattices of semic...
We summarize recent theoretical works on artificial graphene realized by honeycomb lattices of semic...
International audienceThe recent experimental realization of self-assembled honeycomb superlattices ...
International audienceThe recent experimental realization of self-assembled honeycomb superlattices ...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
We investigate a new class of ternary materials such as LiAuSe and KHgSb with a honeycomb structure ...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
We investigate a new class of ternary materials such as LiAuSe and KHgSb with a honeycomb structure ...
We show that a magnetic insulating state with nonzero spin chirality is realized in a quarter-doped ...
We explore the possibility of inducing a topological insulator phase in a honeycomb lattice lacking ...
Physical phenomena driven by topological properties, such as the quantum Hall effect, have the appea...