International audienceRecently, great experimental efforts towards designing topological electronic states have been invested in layered incommensurate heterostructures, which form various nano- and mesoscale domains. In particular, it has become clear that a delicate interplay of different spin-orbit terms is induced in graphene on transition metal dichalcogenide substrates. We therefore theoretically study various types of domain walls in spin-orbit coupling in graphene looking for robust one-dimensional propagating electronic states. To do so, we use an interface Chern number and a spectral flow analysis in the low-energy theory and contrast our results to the standard arguments based on valley-Chern numbers or Chern numbers in continuum...
We consider magic-angle twisted bilayer graphene (TBG) at filling $\nu=+3$, where experiments have o...
The electronic properties of a graphene monolayer in a magnetic and a strain-induced pseudomagnetic ...
Strong gate control of proximity-induced spin-orbit coupling was recently predicted in bilayer graph...
Recently, great experimental efforts towards designing topological electronic states have been inves...
We report on measurements of quantized conductance in gate-defined quantum point contacts in bilayer...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
As techniques for the synthesis of atomically layered materials are improving, we are particularly i...
We present a systematic study on the influence of Rashba spin-orbit coupling, interlayer potential d...
We use a combination of experimental techniques to demonstrate a general occurrence of spin-orbit in...
We show that gated bilayer graphene hosts a strong topological insulator (TI) phase in the presence ...
The relative strength of different proximity spin-orbit couplings in graphene on transition metal di...
The relative strength of different proximity spin-orbit couplings in graphene on transition metal di...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
We consider magic-angle twisted bilayer graphene (TBG) at filling $\nu=+3$, where experiments have o...
The electronic properties of a graphene monolayer in a magnetic and a strain-induced pseudomagnetic ...
Strong gate control of proximity-induced spin-orbit coupling was recently predicted in bilayer graph...
Recently, great experimental efforts towards designing topological electronic states have been inves...
We report on measurements of quantized conductance in gate-defined quantum point contacts in bilayer...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
As techniques for the synthesis of atomically layered materials are improving, we are particularly i...
We present a systematic study on the influence of Rashba spin-orbit coupling, interlayer potential d...
We use a combination of experimental techniques to demonstrate a general occurrence of spin-orbit in...
We show that gated bilayer graphene hosts a strong topological insulator (TI) phase in the presence ...
The relative strength of different proximity spin-orbit couplings in graphene on transition metal di...
The relative strength of different proximity spin-orbit couplings in graphene on transition metal di...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
We consider magic-angle twisted bilayer graphene (TBG) at filling $\nu=+3$, where experiments have o...
The electronic properties of a graphene monolayer in a magnetic and a strain-induced pseudomagnetic ...
Strong gate control of proximity-induced spin-orbit coupling was recently predicted in bilayer graph...