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February 5, 20260 citations

Thickness-dependent structural and magnetic properties of

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MMMohsenah H. J. MashniwiNANorah AlgethamiSASaud A. Algarni

Key Points

  • The research investigates how changing the thickness of the PNMO layer affects the structural and magnetic properties.
  • Fabrication of bilayer thin films of Pr2NiMnO6 and NdFeO3 using pulsed-laser deposition.
  • Utilization of SrTiO3 substrates for the thin films.
  • Systematic investigation of crystal structure and magnetism by varying the PNMO layer thickness.
  • Characterization through X-ray diffraction and magnetic measurements.
  • Epitaxial growth of thin films was confirmed via X-ray diffraction.
  • Magnetic measurements indicated that a thicker PNMO layer improves exchange bias.
  • Reduction of interfacial strain correlated with better alignment of magnetic domains.

Abstract

Multifunctional materials combining electric and magnetic ordering have garnered significant attention due to their potential in next-generation electronic devices, especially in spintronics. The exchange bias (EB) effect, which comes from the combination of ferromagnetic (FM) and antiferromagnetic (AFM) materials, is very important for how well devices work. In this study, bilayer thin films of Pr2NiMnO6 (PNMO) and NdFeO3 (NFO) were fabricated using pulsed-laser deposition on SrTiO3 substrates. The effects of varying the PNMO layer thickness on crystal structure, magnetism, and exchange bias were systematically investigated. X-ray diffraction confirmed epitaxial growth, while magnetic measurements revealed the impact of interfacial strain on exchange coupling. The results show that making the PNMO layer thicker improves the exchange bias (EB), mainly because it reduces strain at the interface and helps align the magnetic domains better. This finding emphasizes the future promise of multiferroic materials for advanced applications in spintronic devices.

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Cite This Study

Mashniwi et al. (2025) studied this question.

synapsesocial.com/papers/69843405f1d9ada3c1fb1bf0https://doi.org/10.1209/0295-5075/adec18/pdf
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