English

Stray magnetic field imaging of thin exfoliated iron halides flakes

Materials Science 2024-03-12 v1

Abstract

Magnetic van der Waals materials are often proposed for use in future spintronic devices, aiming to leverage the combination of long-range magnetic order and near-atomic thinness to produce energy-efficient components. One class of material that has been discussed in this context are the iron halides FeCl2_2 and FeBr2_2, which are A-type antiferromagnets with strong uniaxial magnetocrystalline anisotropy. However, despite characterization of the bulk materials, the possibility for sustaining the magnetic behaviors that would underpin such applications in thin flakes has not been investigated. In this work, we use nitrogen-vacancy (NV) center microscopy to quantitatively image magnetism in individual exfoliated flakes of these iron halides, revealing the absence of magnetic remanence, a weak induced magnetization under bias field and variable behavior versus temperature. We show that our results are consistent with the antiferromagnetic behavior of the bulk material with a soft ferromagnetic uncompensated layer, indicating that extended (>1 μ>1~\mum) ferromagnetic domains are not sustained even at low temperatures (down to 4 K). Finally, we find that the magnetic order is strongly affected by the sample preparation, with a surprising diamagnetic order observed in a thin, hydrated sample.

Keywords

Cite

@article{arxiv.2307.10561,
  title  = {Stray magnetic field imaging of thin exfoliated iron halides flakes},
  author = {Fernando Meneses and Rongrong Qi and Alexander J. Healey and Yi You and Islay O. Robertson and Sam C. Scholten and Ashok Keerthi and Gary Harrison and Lloyd C. L. Hollenberg and Boya Radha and Jean-Philippe Tetienne},
  journal= {arXiv preprint arXiv:2307.10561},
  year   = {2024}
}

Comments

15 pages, 13 figures