4.8 Article

Interior and Edge Magnetization in Thin Exfoliated CrGeTe3 Films

Journal

NANO LETTERS
Volume 22, Issue 7, Pages 3165-3172

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.1c04665

Keywords

2D magnetism; edge magnetism; superconducting; ferromagnetic interface; scanning SQUID-on-tip microscopy; CrGeTe3

Funding

  1. European Research Council (ERC) [802952]
  2. Israel Science Foundation (ISF) [649/17, 2178/17]
  3. EU-COST Action [CA16218]
  4. DFG [443404566]
  5. ISF grant [861/19]
  6. Spanish State Research Agency [PID2020-114071RB-I00, CEX2018-000805-M]
  7. Comunidad de Madrid through program NANOMAGCOST-CM [S2018/NMT-4321]
  8. European Research Council (ERC) [802952] Funding Source: European Research Council (ERC)

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In this study, the magnetic properties of CrGeTe3 (CGT) material were investigated using scanning SQUID-on-tip microscopy, and a thickness dependent magnetization state diagram of CGT films was provided based on the combination with transport measurements.
CrGeTe3 (CGT) is a semiconducting vdW ferromagnet shown to possess magnetism down to a two-layer thick sample. Although CGT is one of the leading candidates for spintronics devices, a comprehensive analysis of CGT thickness dependent magnetization is currently lacking. In this work, we employ scanning SQUID-on-tip (SOT) microscopy to resolve the magnetic properties of exfoliated CGT flakes at 4.2 K. Combining transport measurements of CGT/NbSe2 samples with SOT images, we present the magnetic texture and hysteretic magnetism of CGT, thereby matching the global behavior of CGT to the domain structure extracted from local SOT magnetic imaging. Using this method, we provide a thickness dependent magnetization state diagram of bare CGT films. No zero-field magnetic memory was found for films thicker than 10 nm, and hard ferromagnetism was found below that critical thickness. Using scanning SOT microscopy, we identify a unique edge magnetism, contrasting the results attained in the CGT interior.

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