Enhancing the spin–orbit interaction in graphene, via proximity effects with topological insulators, could create a novel 2D system that combines nontrivial spin textures with high electron mobility. To engineer practical spintronics applications with such graphene/topological insulator (Gr/TI) heterostructures, an understanding of the hybrid spin-dependent properties is essential. However, to date, despite the large number of experimental studies on Gr/TI heterostructures reporting a great variety of remarkable (spin) transport phenomena, little is known about the true nature of the spin texture of the interface states as well as their role on the measured properties. Here, we use ab initio simulations and tight-binding models to determine...
Since their discovery, graphene and other 2D materials have become a subject of intense research in ...
We report that the ye-electrons of graphene can be spin-polarized to create a phase with a significa...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...
Enhancing the spin-orbit interaction in graphene, via proximity effects with topological insulators,...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Resumen del póster presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintro...
Since their discovery, graphene and other 2D materials have become a subject of intense research in ...
We report that the ye-electrons of graphene can be spin-polarized to create a phase with a significa...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...
Enhancing the spin-orbit interaction in graphene, via proximity effects with topological insulators,...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Dirac materials such as graphene and topological insulators (TIs) are known to have unique electroni...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
Resumen del póster presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintro...
Since their discovery, graphene and other 2D materials have become a subject of intense research in ...
We report that the ye-electrons of graphene can be spin-polarized to create a phase with a significa...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...