Since their discovery, graphene and other 2D materials have become a subject of intense research in condensed matter physics. Especially the vast possibilities of combining those materials into heterostructures are promising for the discovery of novel physical phenomena. The heterostructures accessible through state-of-the-art techniques have suitably clean interfaces between the layers. Graphene has gained a lot of attention due to its remarkable mechanical stability and extremely high electron mobility. However, the zero bandgap of graphene is a major bottleneck for implementing this 2D material into most electronic applications. The ability to tune the properties of graphene by proximity effects has shifted the focus of graphene resear...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...
Since its discovery, graphene has been a promising material for spintronics: its low spin-orbit coup...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Two-dimensional materials and their van der Waals heterostructures offer unforeseen potential for el...
Utilizing van der Waals layered 2D ferromagnetic materials in spintronic devices has become very att...
Graphene stands out for its high mobility and weak spin-orbit coupling (SOC) offering efficient tran...
The advent of new two-dimensional materials, and the ability to create van der Waals heterostructure...
Novel two-dimensional materials with weak interlayer Van der Waals interaction are fantastic platfor...
Due to its high room temperature electron mobility and long spin diffusion length, the two-dimension...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
Two-dimensional materials provide a new platform for discovery of exotic physics and phenomena. They...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
We report that the ye-electrons of graphene can be spin-polarized to create a phase with a significa...
We use a van der Waals pickup technique to fabricate different heterostructures containing WSe2(WS2)...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...
Since its discovery, graphene has been a promising material for spintronics: its low spin-orbit coup...
It has been theoretically proposed that the spin textures of surface states in a topological insulat...
Two-dimensional materials and their van der Waals heterostructures offer unforeseen potential for el...
Utilizing van der Waals layered 2D ferromagnetic materials in spintronic devices has become very att...
Graphene stands out for its high mobility and weak spin-orbit coupling (SOC) offering efficient tran...
The advent of new two-dimensional materials, and the ability to create van der Waals heterostructure...
Novel two-dimensional materials with weak interlayer Van der Waals interaction are fantastic platfor...
Due to its high room temperature electron mobility and long spin diffusion length, the two-dimension...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
Two-dimensional materials provide a new platform for discovery of exotic physics and phenomena. They...
Engineering 2D material heterostructures by combining the best of different materials in one ultimat...
We report that the ye-electrons of graphene can be spin-polarized to create a phase with a significa...
We use a van der Waals pickup technique to fabricate different heterostructures containing WSe2(WS2)...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
arXiv:1806.02999v1Enhancing the spin–orbit interaction in graphene, via proximity effects with topol...
Since its discovery, graphene has been a promising material for spintronics: its low spin-orbit coup...