Spin-valley coupling and spin-relaxation anisotropy in all-CVD Graphene- MoS2 van der Waals heterostructure
Artikel i vetenskaplig tidskrift, 2023

Two-dimensional (2D) van der Waals (vdW) heterostructures fabricated by combining 2D materials with unique properties into one ultimate unit can offer a plethora of fundamental phenomena and practical applications. Recently, proximity-induced quantum and spintronic effects have been realized in heterostructures of graphene (Gr) with 2D semiconductors and their twisted systems. However, these studies are so far limited to exfoliated flake-based devices, limiting their potential for scalable practical applications. Here, we report spin-valley coupling and spin-relaxation anisotropy in Gr-MoS2 heterostructure devices prepared from scalable chemical vapor-deposited (CVD) 2D materials. Spin precession and dynamics measurements reveal an enhanced spin-orbit coupling strength in the Gr-MoS2 heterostructure in comparison with pristine Gr at room temperature. Consequently, large spin-relaxation anisotropy is observed in the heterostructure, providing a method for spin filtering due to spin-valley coupling. These findings open a scalable platform for all-CVD 2D vdW heterostructures design and their device applications.

Författare

Anamul Md Hoque

2D-Tech

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Vasudev Ramachandra

Student vid Chalmers

Antony George

Friedrich-Schiller-Universität Jena

Emad Najafidehaghani

Friedrich-Schiller-Universität Jena

Ziyang Gan

Friedrich-Schiller-Universität Jena

Richa Mitra

2D-Tech

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Bing Zhao

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

2D-Tech

Dmitrii Khokhriakov

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Andrey Turchanin

Friedrich-Schiller-Universität Jena

Samuel Lara Avila

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

2D-Tech

Sergey Kubatkin

2D-Tech

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Saroj Prasad Dash

2D-Tech

Chalmers, Mikroteknologi och nanovetenskap, Kvantkomponentfysik

Physical Review Materials

24759953 (eISSN)

Vol. 7 4 044005

Spinntronik med topologiskt kvantmaterial och magnetisk heterostruktur

Vetenskapsrådet (VR) (2021-04821), 2022-01-01 -- 2025-12-31.

Graphene Core Project 3 (Graphene Flagship)

Europeiska kommissionen (EU) (EC/H2020/881603), 2020-04-01 -- 2023-03-31.

2D material-baserad teknologi för industriella applikationer (2D-TECH)

VINNOVA (2019-00068), 2020-05-01 -- 2024-12-31.

GKN Aerospace Sweden (2D-tech), 2021-01-01 -- 2024-12-31.

Ämneskategorier

Den kondenserade materiens fysik

DOI

10.1103/PhysRevMaterials.7.044005

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Senast uppdaterat

2024-02-12