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Magnetic properties of H+ implanted bubble garnet films by means of depth selective conversion electron Mössbauer spectroscopy

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Abstract

Bubble garnet films before and after 50 keV H+ implantation have been studied by means of DCEMS. The spintilt angle of the films as grown after etching off 1000 å was measured to be 30±2‡ relative to the surface normal at the top of the surface. The doses of implanted H+ ions were 2, 4 and 8×1016 ions/cm2. Mössbauer spectra were measured after successive etching of the implanted layer. The magnetic hyperfine field was obtained as a function of depth. The implanted hydrogen distribution was also measured by the1H(15N, αγ)12C reaction.

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Additional information

We are thankful to Dr. T. Hattanda NTT, for providing garnet films and for the ion implantation and Dr. P. Gerard for sending his data before publication.

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Itoh, J., Yonekura, Y., Toriyama, T. et al. Magnetic properties of H+ implanted bubble garnet films by means of depth selective conversion electron Mössbauer spectroscopy. Hyperfine Interact 16, 771–774 (1983). https://doi.org/10.1007/BF02147364

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Keywords

  • Hydrogen
  • Spectroscopy
  • Thin Film
  • Magnetic Property
  • Hyperfine Field