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Spin flop and crystalline anisotropic magnetoresistance in CuMnAs

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arxiv 1911.12381 v2 pith:WHELIYZC submitted 2019-11-27 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords magneticmagnetoresistanceanisotropicantiferromagneticcumnasfilmsmechanismsmethods
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent research works have shown that the magnetic order in some antiferromagnetic materials can be manipulated and detected electrically, due to two physical mechanisms: Neel-order spin-orbit torques and anisotropic magnetoresistance. While these observations open up opportunities to use antiferromagnets for magnetic memory devices, different physical characterization methods are required for a better understanding of those mechanisms. Here we report a magnetic field induced rotation of the antiferromagnetic Neel vector in epitaxial tetragonal CuMnAs thin films. Using soft x-ray magnetic linear dichroism spectroscopy, x-ray photoemission electron microscopy, integral magnetometry and magneto-transport methods, we demonstrate spin-flop switching and continuous spin reorientation in antiferromagnetic films with uniaxial and biaxial magnetic anisotropies, respectively. From field-dependent measurements of the magnetization and magnetoresistance, we obtain key material parameters including the anisotropic magnetoresistance coefficients, magnetocrystalline anisotropy, spin-flop and exchange fields.

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