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April 24, 2026Journal of Applied Physics0 citations

Detection of magnetic ordering evolution via spin Hall magnetoresistance in antiferromagnetic Cr2O3 thin films

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ZZZiyang ZhangSGSifan Gao刘刘广润

Key Points

  • The research aims to explore the evolution of magnetic ordering in antiferromagnetic Cr2O3 thin films through spin Hall magnetoresistance (SMR).
  • Investigated spin Hall magnetoresistance in Cr2O3/Pt bilayer devices.
  • Analyzed temperature dependence of the SMR ratio.
  • Examined the effects of Cr2O3 thickness on magnetic ordering.
  • The SMR ratio exhibits a nonmonotonic temperature dependence with a peak at the Néel temperature.
  • Néel temperature decreases as Cr2O3 thickness reduces, aligning with finite-size effects.
  • Variations in spin current transparency at the Cr2O3/Pt interface indicate changes in magnetic ordering.

Abstract

The magnetic ordering evolution was investigated via spin Hall magnetoresistance (SMR) in antiferromagnetic Cr2O3 thin films. The SMR ratio of the Cr2O3/Pt bilayer devices exhibits a nonmonotonic temperature dependence, which peaks at a specific temperature. The peak temperature is considered to be the Néel temperature of the Cr2O3 layer, which decreases with reducing Cr2O3 thickness, as expected from finite-size effect. The nonmonotonic temperature dependence of SMR ratio is attributed to the variations in the spin current transparency at the Cr2O3/Pt interface, which reflects the magnetic ordering evolution in the Cr2O3 layer. This study highlights the promise of SMR as an electrical technique for detecting and elucidating the magnetic ordering evolution in antiferromagnetic materials.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69eb0cb2553a5433e34b5b22https://doi.org/10.1063/5.0316119
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