Control of magnetic properties in ferrimagnetic GdFe and TbFe thin films by He+ and Ne+ irradiation

Michal Krupinski, Julian Hintermayr, Pawel Sobieszczyk, and Manfred Albrecht
Phys. Rev. Materials 5, 024405 – Published 10 February 2021
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Abstract

The impact of kiloelectronvolt He+ and kiloelectronvolt Ne+ ion irradiation on the magnetic properties of rare earth-3d transition metal amorphous alloys was investigated. The studies were performed for 20-nm-thick GdxFe100x and TbxFe100x films with perpendicular magnetic anisotropy, irradiated with doses ranging from 5×1013 to 5×1015ionspercm2. We demonstrate that this approach can be used to engineer magnetic properties such as magnetization, magnetic anisotropy, and compensation temperature in both alloys and to control the spin-flop reorientation transition in GdFe. We find that fine-tuning of the compensation point is possible without losing perpendicular magnetic anisotropy by appropriate selection of ion energy and irradiation dose. The experiments were supported by atomistic simulations revealing that the observed changes can be attributed to selective oxidation of rare earth atoms. Oxidation of 1% of atoms in the lattice gives reasonable agreement to the experimental results for low and medium ion doses.

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  • Received 4 December 2020
  • Revised 20 January 2021
  • Accepted 25 January 2021

DOI:https://doi.org/10.1103/PhysRevMaterials.5.024405

©2021 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Michal Krupinski1,2,*, Julian Hintermayr1, Pawel Sobieszczyk2, and Manfred Albrecht1

  • 1Institute of Physics, University of Augsburg, Universitätsstraße 1, 86159 Augsburg, Germany
  • 2Institute of Nuclear Physics Polish Academy of Sciences, Radzikowskiego 152, 31342 Krakow, Poland

  • *michal.krupinski@ifj.edu.pl

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Vol. 5, Iss. 2 — February 2021

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