Influence of the Magnetic State on the Chemical Order-Disorder Transition Temperature in Fe-Ni Permalloy

M. Ekholm, H. Zapolsky, A. V. Ruban, I. Vernyhora, D. Ledue, and I. A. Abrikosov
Phys. Rev. Lett. 105, 167208 – Published 15 October 2010
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Abstract

In magnetic alloys, the effect of finite temperature magnetic excitations on phase stability below the Curie temperature is poorly investigated, although many systems undergo phase transitions in this temperature range. We consider random Ni-rich Fe-Ni alloys, which undergo chemical order-disorder transition approximately 100 K below their Curie temperature, to demonstrate from ab initio calculations that deviations of the global magnetic state from ideal ferromagnetic order due to temperature induced magnetization reduction have a crucial effect on the chemical transition temperature. We propose a scheme where the magnetic state is described by partially disordered local magnetic moments, which in combination with Heisenberg Monte Carlo simulations of the magnetization allows us to reproduce the transition temperature in good agreement with experimental data.

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  • Received 18 June 2010

DOI:https://doi.org/10.1103/PhysRevLett.105.167208

© 2010 The American Physical Society

Authors & Affiliations

M. Ekholm1,*, H. Zapolsky2, A. V. Ruban3, I. Vernyhora2, D. Ledue2, and I. A. Abrikosov1

  • 1Department of Physics, Chemistry and Biology (IFM), Linköping University, SE-58183 Linköping, Sweden
  • 2Groupe de Physique des Matériaux, UMR CNRS 6634 Université de Rouen, Avenue de l’Université, BP12 Rouen, France
  • 3Applied Material Physics, Department of Materials Science and Engineering, Royal Institute of Technology, SE-10044 Stockholm, Sweden

  • *marekh@ifm.liu.se

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Vol. 105, Iss. 16 — 15 October 2010

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