4.6 Article

Ultra-long spin relaxation in two-dimensional ferromagnet Cr2Ge2Te6 flake

Journal

2D MATERIALS
Volume 8, Issue 4, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.1088/2053-1583/ac2ab3

Keywords

ultrafast spin dynamics; 2D van der Waals magnets; demagnetization; remagnetization; dimensionality; thermal diffusion anisotropy

Funding

  1. National Key R&D Program of China [2017YFA0303603, 2016YFA0401803]
  2. National Natural Science Foundation of China (NSFC) [U2032218, 11574316, 11947212, 61805256, 11904367]
  3. Plan for Major Provincial Science & Technology Project [202003a05020018]
  4. Key Research Program of Frontier Sciences, CAS [QYZDB-SSW-SLH011]
  5. Users with Excellence Program of Hefei Science Center CAS [2021HSC-UE009]
  6. High Magnetic Field Laboratory of Anhui Province

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By investigating two-dimensional van der Waals ferromagnetic semiconductors and comparing crystals, different demagnetization and remagnetization behaviors were discovered, indicating weaker electron-spin coupling in 2D van der Waals magnets and ultra-long remagnetization process in particular cases. The study also revealed the key roles of crystal dimensionality and thermal diffusion anisotropy in the spin dynamics of 2D van der Waals magnets, which may have potential applications in spintronics and magnonics devices.
By utilizing time-resolved magneto-optical Kerr effect technique, we investigated both demagnetization and remagnetization processes of a typical two-dimensional (2D) van der Waals (vdW) ferromagnetic (FM) semiconductor Cr2Ge2Te6 (CGT) and two comparative Te-based crystals, i.e. three-dimensional (3D) FM metal Cr3Te4 (CT) and 2D vdW FM metal Fe3GeTe2 (FGT). Different from 3D CT showing one-step laser-induced demagnetization, two-steps demagnetization behavior is dominated in 2D vdW FGT and CGT, which indicates that the 2D vdW magnets have relatively weaker electron-spin coupling. Of particular interest, we discovered an ultra-long remagnetization behavior in the 2D vdW CGT flake. The laser pumping induced spin demagnetization would not recover even in the time scale of 3500 ps (experimental setup limitation). To the best of our knowledge, this is the longest remagnetization process observed so far and it might be one of the particular characterizations of 2D vdW ferromagnet semiconductors. Based on the modified three temperature model, the key roles played by the crystal dimensionality and thermal diffusion anisotropy were revealed in the spin dynamics of 2D vdW magnets. Our findings would not only open the door to the thoroughly understanding of the origin of the magnetism in 2D FM materials but also undoubtedly find suitable applications in spintronics and magnonics devices.

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