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September 27, 2025Nature Communications4 citationsOpen Access

Inverted shear-strain magnetoelastic coupling at the Fe/BaTiO3 interface from polarised x-ray imaging

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FMFrancesco MaccherozziMGM. GhidiniMVM. E. Vickers

Key Points

  • Inverted interfacial magnetoelastic coupling is observed at the Fe/BaTiO3 interface due to shear strain.
  • Magnetocrystalline anisotropy influences local magnetization alignment, competing with shear strain effects.
  • PhotoEmission Electron Microscopy and micromagnetic simulations were employed to investigate ferroic domains.
  • Tuning shear strain contributions may lead to innovative designs for future magnetoelectric devices.

Abstract

Abstract The elastic degree of freedom is widely exploited to mediate magnetoelectric coupling between ferromagnetic films and ferroelectric substrates. For epitaxial Fe films grown on clean BaTiO 3 substrates, shear strain can determine the underlying magnetoelastic coupling. Here, we use PhotoEmission Electron Microscopy of ferroic Fe and BaTiO 3 domains, combined with micromagnetic simulations, to directly reveal an inverted interfacial magnetoelastic coupling in the low-dimensional limit. We show that the magnetocrystalline anisotropy competes with the epitaxial shear strain to align the local magnetization of ultrathin Fe films close to the local polarization direction of the ferroelectric BaTiO 3 in-plane domains. Poling the BaTiO 3 substrate creates c -domains with no shear strain contribution with the local magnetization rotated by ~45°. Tuning shear strain magnetoelastic contributions suggests new routes for designing magnetoelectric devices.

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Cite This Study

Maccherozzi et al. (2025) studied this question.

synapsesocial.com/papers/68d7cc6aeebfec0fc5238aadhttps://doi.org/10.1038/s41467-025-62978-2
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