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Nature communications. 2025 Mar 30;16(1):3075. doi: 10.1038/s41467-025-58119-4 Q114.72024

Disentangling edge and bulk spin-to-charge interconversion in MoS2 monolayer flakes

在二硫化钼单层片中分离边缘和体自旋电荷转换 翻译改进

Rodrigo Torrão Victor  1, Syed Hamza Safeer  1  2, John F R Marroquin  3, Marcio Costa  4, Jorlandio F Felix  5, Victor Carozo  6, Luiz C Sampaio  1, Flavio Garcia  7

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作者单位

  • 1 Centro Brasileiro de Pesquisas Físicas, R. Dr. Xavier Sigaud, 150, Urca, Rio de Janeiro, 22290-180, RJ, Brazil.
  • 2 Materials Science Laboratory, Department of Physics, Quaid-i-Azam University, Islamabad, 45320, Pakistan.
  • 3 Institute of Physics, LabINS, University of Brasília (UnB), Brasília, DF, 70910-900, Brazil.
  • 4 Instituto de Física, Universidade Federal Fluminense, Niterói, 24210-346, RJ, Brazil.
  • 5 Institute of Physics, LabINS, University of Brasília (UnB), Brasília, DF, 70910-900, Brazil. jorlandio@unb.br.
  • 6 Departamento de Física, Pontifícia Universidade Católica do Rio de Janeiro, Rio de Janeiro, 22451900, RJ, Brazil.
  • 7 Centro Brasileiro de Pesquisas Físicas, R. Dr. Xavier Sigaud, 150, Urca, Rio de Janeiro, 22290-180, RJ, Brazil. fgarcia@cbpf.br.
  • DOI: 10.1038/s41467-025-58119-4 PMID: 40159499

    摘要 Ai翻译

    Semiconductor transition metal dichalcogenides are an archetype for spintronic devices due to their spin-to-charge interconversion mechanisms. However, the exact microscopic origin of this interconversion is not yet determined. In our study, we investigated light-induced spin pumping in YIG/MoS2 heterostructures. Our findings revealed that the MoS2 monolayer microsized flakes contribute to spin current injection through two distinct mechanisms: metallic edge states and semiconductor area states. The competition between these mechanisms, influenced by the flake size, leads to different behaviors of spin-pumping. Our calculations of the local density of states, by means of density functional theory, of a flake show that light-driven spin current injection can be controlled based on the intensity of light with a suitable wavelength. We demonstrate that a lightdriven spin current injection can enhance up to very high values, attenuate, or even switch on/off the spin-to-charge interconversion. These results hold promise for developing low energy-consuming opto-spintronic device applications.

    Keywords:spin-to-charge interconversion; MoS2 monolayer flakes

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    期刊名:Nature communications

    缩写:NAT COMMUN

    ISSN:2041-1723

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    IF/分区:14.7/Q1

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    Disentangling edge and bulk spin-to-charge interconversion in MoS2 monolayer flakes