Changes in the Magnetic Structure of Multiferroic BiFe0.80Cr0.20O3 with Temperature


Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

The results of a Mössbauer study of the magnetic structure of multiferroic BiFe0.80Cr0.20O3 in the temperature range of 5–550 K are presented. It is found that a collinear antiferromagnetic structure of the G type is present in BiFe0.80Cr0.20O3 at temperatures below 260 K. Above 260 K, an anharmonic spin wave with a magnetic anisotropy of the easy-axis type with a high value of the anharmonicity parameter m arises. With a further increase in the temperature, the m parameter decreases and tends to zero at T ~ 420 K, at which a harmonic spin wave comes into existence. Above a temperature of about 420 K, the m parameter increases again and the spin wave becomes anharmonic with an easy-plane magnetic anisotropy. At the Néel temperature, TN = 505 ± 10 K, the sample undergoes a transition from the magnetically ordered to the paramagnetic state. The change in the type of magnetic anisotropy at T ~ 420 K is explained by competing contributions of different signs to the effective magnetic anisotropy constant and their different temperature dependence for the BiFe0.80Cr0.20O3 multiferroic.

About the authors

V. S. Rusakov

Moscow State University

Email: pokatilov@mirea.ru
Russian Federation, Moscow

V. S. Pokatilov

MIREA—Russian Technological University

Author for correspondence.
Email: pokatilov@mirea.ru
Russian Federation, Moscow

A. S. Sigov

MIREA—Russian Technological University

Email: pokatilov@mirea.ru
Russian Federation, Moscow

A. A. Belik

National Institute for Materials Science (NIMS)

Email: pokatilov@mirea.ru
Japan, Tsukuba

M. E. Matsnev

Moscow State University

Email: pokatilov@mirea.ru
Russian Federation, Moscow

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2019 Pleiades Publishing, Ltd.