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Micromagnetometry of two-dimensional ferromagnets

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arxiv 1902.06988 v2 pith:M27QDCZT submitted 2019-02-19 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords magneticferromagneticmicromagnetometrytwo-dimensionalatomicallycannotcrbr3ferromagnetism
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The study of atomically thin ferromagnetic crystals has led to the discovery of unusual magnetic behaviour and provided insight into the magnetic properties of bulk materials. However, the experimental techniques that have been used to explore ferromagnetism in such materials cannot probe the magnetic field directly. Here, we show that ballistic Hall micromagnetometry can be used to measure the magnetization of individual two-dimensional ferromagnets. Our devices are made by van der Waals assembly in such a way that the investigated ferromagnetic crystal is placed on top of a multi-terminal Hall bar made from encapsulated graphene. We use the micromagnetometry technique to study atomically thin chromium tribromide (CrBr3). We find that the material remains ferromagnetic down to monolayer thickness and exhibits strong out-of-plane anisotropy. We also find that the magnetic response of CrBr3 varies little with the number of layers and its temperature dependence cannot be described by the simple Ising model of two-dimensional ferromagnetism.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Anomalous Hall effect mechanisms in quasi-2D van der Waals ferromagnet Fe0.29TaS2

    cond-mat.mtrl-sci 2019-08 conditional novelty 5.0 of 10

    In Fe0.29TaS2, reducing thickness from bulk to 14 nm switches the dominant anomalous Hall effect mechanism from extrinsic skew scattering to intrinsic Berry-curvature contribution, with a crossover near a channel cond...

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