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  1. FeZrN films: Role of dc magnetron sputtering conditions in the formation of their elemental and phase compositions
  2. Two modes of magnetic structure of nanocrystalline FeZrN films prepared by oblique-angle magnetron sputtering
  3. Two‐Mode Stochastic Magnetic Structure in Nanocrystalline Soft Magnetic Fe–Zr Films
  4. Fe-Zr-N films: Effect of nitrogen content and nitrogen-to-zirconium concentration ratio on saturation induction
  5. Approximation of the Influence of Effective Magnetic Parameters on the Coercivity of Iron-Based Nanocrystalline Films
  6. High-induction nanocrystalline soft magnetic FeX TiY BZ films prepared by magnetron sputtering
  7. Magnetic anisotropy induced in the nanocrystalline FeZrN films prepared by oblique-angle magnetron sputtering
  8. Magnetic structure and magnetic properties of nanocrystalline and amorphous Fe–Zr–N films
  9. Phase composition, structure, and magnetic properties of Fe–Zr–N films produced by magnetron sputtering of heated target
  10. Micromagnetic structure of soft magnetic nanocrystalline Fe-based films
  11. Components of Magnetic Anisotropy of Soft Magnetic Nanocrystalline Fe-Based Films
  12. Atomic Force Microscopy Measurements of Magnetostriction of Soft-Magnetic Films
  13. Magnetization Correlations and Random Magnetic Anisotropy in Nanocrystalline Films Fe78Zr10N12
  14. Study of the physical nature of the soft magnetic properties of Fe-ZrN nanocrystalline films