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February 12, 2026Applied Physics Letters1 citations

Reduction of magnetoelastic constant B2 in Fe thin films by nitrogen implantation, as determined by surface acoustic waves

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ASA. SharmaLCLouis ChristienneFMFlorian Millo

Key Points

  • The study aims to modify and measure the magnetoelastic coupling constant B2 in nitrogen-implanted Fe thin films.
  • Determined magnetocrystalline anisotropy using standard techniques.
  • Measured the field dependence of Rayleigh surface acoustic wave (SAW) velocity variations.
  • Extracted the magnetoelastic coupling constant by fitting the field-angle dependence of SAW variations.
  • Reproduced variations in SAW velocity in ferromagnetic resonance experiments for both pristine and nitrogen-implanted films.
  • Confirmed almost a 50% reduction in the magnetoelastic coupling constant B2 with nitrogen doping at a level of 2 ×1016 N2/cm2.
  • Successfully measured variations in SAW velocity as a function of external field in both types of films.

Abstract

This article presents an original approach to both modify and measure the magnetoelastic coupling constant B2 in epitaxial nitrogen-implanted Fe thin films presenting the α′−Fe8N1−x phase. Once the magnetocrystalline anisotropy has been determined by standard techniques, we measure the field dependence of Rayleigh surface acoustic wave (SAW) velocity variations. The magnetoelastic coupling constant is extracted by fitting the field-angle dependence of these variations. Using the magnetic and magnetoelastic parameters thus determined, the variations in SAW velocity as a function of the external field seen in surface acoustic wave induced ferromagnetic resonance experiments can be accurately reproduced, both in pristine and nitrogen-implanted Fe thin films. This ensemble of results confirms a reduction by almost half of the magnetoelastic coupling under doping level 2 ×1016 N2/cm2.

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Cite This Study

Sharma et al. (2026) studied this question.

synapsesocial.com/papers/698d6e6e5be6419ac0d542dchttps://doi.org/10.1063/5.0289237
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