Magnetic behavior of metastable fcc Fe-Cu after thermal treatments

P. Crespo, A. Hernando, R. Yavari, O. Drbohlav, A. Garci´a Escorial, J. M. Barandiara´n, and I. Oru´e
Phys. Rev. B 48, 7134 – Published 1 September 1993
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Abstract

A ferromagnetic and supersaturated fcc Fe51Cu49 solid solution has been obtained by mechanical alloying. After subsequent thermal treatments the fcc phase undergoes a spinodal decomposition which finally, at 780 K, yields a mixture of fcc and bcc phases. In this work, a systematic magnetic study is carried out on samples at different decomposition states in order to determine the process of transformation into the stable phases. We observe a 20% maximum diminution on the magnetic moment with increasing temperatures of the thermal treatment. The Mo¨ssbauer spectrum taken at 8 K shows that 20% of the Fe atoms are in a nonferromagnetic state. On the other hand, upon heating up to 723 K the room-temperature coercive field increases dramatically to 640 Oe, and after cooling down to 10 K it decreases to 270 Oe. Deviations from the T3/2 law in the temperature dependence of the magnetization have been observed. This behavior is explained by fluctuations in composition due to the spinodal decomposition, which lead to fluctuations of the magnetic order parameters, i.e., magnetic moment and Curie temperature.

  • Received 30 April 1993

DOI:https://doi.org/10.1103/PhysRevB.48.7134

©1993 American Physical Society

Authors & Affiliations

P. Crespo and A. Hernando

  • Instituto de Magnetismo Aplicado, UCM-RENFE, P.O. Box 155, Las Rozas, 28230 Madrid, Spain

R. Yavari and O. Drbohlav

  • Laboratoire de Thermodynamique et de Physico-Chimie Me´tallurgiques, Institute National Polytechnique de Grenoble, St. Martin d’He`res 38402, France

A. Garci´a Escorial

  • CENIM, Consejo Superior de Investigaciones Cienti´ficas CSIC, Avda. G. del Amo, 8, 28040 Madrid, Spain

J. M. Barandiara´n and I. Oru´e

  • Universidad del Pai´s Vasco, P.O. Box 644, 48080 Bilbao, Spain

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Issue

Vol. 48, Iss. 10 — 1 September 1993

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