Van der Waals heterostructures have become a paradigm for designing new materials and devices in which specific functionalities can be tailored by combining the properties of the individual 2D layers. A single layer of transition-metal dichalcogenide (TMD) is an excellent complement to graphene (Gr) because the high quality of charge and spin transport in Gr is enriched with the large spin–orbit coupling of the TMD via the proximity effect. The controllable spin-valley coupling makes these heterostructures particularly attractive for spintronic and opto-valleytronic applications. In this work, we study spin precession in a monolayer MoSe2/Gr heterostructure and observe an unconventional, dramatic modulation of the spin signal, showing 1 ord...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
We present a DFT-based investigation of the twist-angle dependent proximity spin-orbit coupling (SOC...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
We report on fundamental aspects of spin dynamics in heterostructures of graphene and transition met...
A large enhancement in the spin-orbit coupling of graphene has been predicted when interfacing it wi...
We report on fundamental aspects of spin dynamics in heterostructures of graphene and transition met...
We report on fundamental aspects of spin dynamics in heterostructures of graphene and transition met...
We study spin transport in bilayer graphene (BLG), spin-orbit coupled to a tungsten di sulfide (WS2)...
We study spin transport in bilayer graphene (BLG), spin-orbit coupled to a tungsten di sulfide (WS2)...
We study spin transport in bilayer graphene (BLG), spin-orbit coupled to a tungsten di sulfide (WS2)...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
We present a DFT-based investigation of the twist-angle dependent proximity spin-orbit coupling (SOC...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
Van der Waals heterostructures have become a paradigm for designing new materials and devices in whi...
We report on fundamental aspects of spin dynamics in heterostructures of graphene and transition met...
A large enhancement in the spin-orbit coupling of graphene has been predicted when interfacing it wi...
We report on fundamental aspects of spin dynamics in heterostructures of graphene and transition met...
We report on fundamental aspects of spin dynamics in heterostructures of graphene and transition met...
We study spin transport in bilayer graphene (BLG), spin-orbit coupled to a tungsten di sulfide (WS2)...
We study spin transport in bilayer graphene (BLG), spin-orbit coupled to a tungsten di sulfide (WS2)...
We study spin transport in bilayer graphene (BLG), spin-orbit coupled to a tungsten di sulfide (WS2)...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...
We present a DFT-based investigation of the twist-angle dependent proximity spin-orbit coupling (SOC...
Two-dimensional materials (2D) and their van der Waals heterostructures provide unique opportunities...