Swift ion irradiations of natFe/57Fe/Si trilayers

Applied Surface Science(2006)

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摘要
We report here on changes in magnetism and microstructure when implanting, at 92 or 300K, up to 5×1015 Au26+-ionscm−2 of 350MeV into natFe(45nm)/57Fe(20nm)/Si trilayers. This choice of ions and energy allowed to test the irradiation effects in the regime of pure electronic stopping. The samples were analysed before and after irradiation by Rutherford back-scattering spectroscopy, X-ray diffraction, conversion electron Mössbauer spectroscopy, and magneto-optical Kerr effect. Up to 1×1015ionscm−2, there was interface broadening at a mixing rate of Δσ2/Φ=55(5)nm4, followed by full Fe–Si inter-diffusion. The Mössbauer spectra revealed fractions of α-Fe and amorphous ferromagnetic and paramagnetic iron silicides, but no crystalline Fe–Si phase. The magnetic remanence in the as-deposited Fe-layer showed small components of uniaxial and four-fold magnetization. For increasing ion fluence, the component with four-fold symmetry grew at the expense of the uniaxial component. For the highest fluences, an isotropic magnetization was found.
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61.80.Jh,68.35.Ct,75.70.Cn,76.80.+y
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