We report that the ye-electrons of graphene can be spin-polarized to create a phase with a significant spin orbit gap at the Dirac point (DP) using a graphene-interfaced topological insulator hybrid material. We have grown epitaxial Bi2Te2Se (BTS) films on a chemical vapor deposition (CVD) graphene. We observe two linear surface bands from both the CVD graphene notably flattened and BTS coexisting with their DPs separated by 0.53 eV in the photoemission data measured with synchrotron photons. We further demonstrate that the separation between the two DPs, Delta(D-D), can be artificially fine-tuned by adjusting the amount of Cs atoms adsorbed on the graphene to a value as small as Delta(D-D) = 0.12 eV to find any proximity effect induced by ...
Two-dimensional materials and their van der Waals heterostructures offer unforeseen potential for el...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...
We report that the π-electrons of graphene can be spin-polarized to create a phase with a significan...
DoctorDirac materials have been widely studied due to their outstanding electronic properties as wel...
Proximity induced spin-orbit coupling effects in graphene on transition-metal dichalcogenides (TMD) ...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
We present a detailed study of the electronic and spin-orbit properties of single and bilayer graphe...
We present a detailed study of the electronic and spin-orbit properties of single and bilayer graphe...
Prototypical 3D topological insulators of the Bi2Se3 family provide a beautiful example of the appea...
Prototypical 3D topological insulators of the Bi2Se3 family provide a beautiful example of the appea...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Since their discovery, graphene and other 2D materials have become a subject of intense research in ...
Two-dimensional materials and their van der Waals heterostructures offer unforeseen potential for el...
Two-dimensional materials and their van der Waals heterostructures offer unforeseen potential for el...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...
We report that the π-electrons of graphene can be spin-polarized to create a phase with a significan...
DoctorDirac materials have been widely studied due to their outstanding electronic properties as wel...
Proximity induced spin-orbit coupling effects in graphene on transition-metal dichalcogenides (TMD) ...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
We present a detailed study of the electronic and spin-orbit properties of single and bilayer graphe...
We present a detailed study of the electronic and spin-orbit properties of single and bilayer graphe...
Prototypical 3D topological insulators of the Bi2Se3 family provide a beautiful example of the appea...
Prototypical 3D topological insulators of the Bi2Se3 family provide a beautiful example of the appea...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Since their discovery, graphene and other 2D materials have become a subject of intense research in ...
Two-dimensional materials and their van der Waals heterostructures offer unforeseen potential for el...
Two-dimensional materials and their van der Waals heterostructures offer unforeseen potential for el...
Graphene is the first model system of two-dimensional topological insulator (TI), also known as quan...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...