Journal of Alloys and Compounds2022,Vol.8928.DOI:10.1016/j.jallcom.2021.162125

Magnetic phase diagram of helimagnetic Ba(Fe1?xScx)12O19 (0 ≤ x ≤ 0.2) hexagonal ferrite

Maruyama K. Tanaka S. Natori S. Bizen I. Amemiya K. Utsumi S. Kiyanagi R. Nakao A. Moriyama K. Ishikawa Y. Amako Y. Iiyama T. Futamura R.
Journal of Alloys and Compounds2022,Vol.8928.DOI:10.1016/j.jallcom.2021.162125

Magnetic phase diagram of helimagnetic Ba(Fe1?xScx)12O19 (0 ≤ x ≤ 0.2) hexagonal ferrite

Maruyama K. 1Tanaka S. 1Natori S. 1Bizen I. 1Amemiya K. 1Utsumi S. 1Kiyanagi R. 2Nakao A. 3Moriyama K. 3Ishikawa Y. 3Amako Y. 4Iiyama T. 4Futamura R.4
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作者信息

  • 1. Suwa University of Science
  • 2. J-PARC Center Japan Atomic Energy Agency
  • 3. Neutron Science and Technology Center Comprehensive Research Organization for Science and Society
  • 4. Faculty of Science Shinshu University
  • 折叠

Abstract

Hexagonal ferrite Ba(Fe1?xScx)12O19 is an important magnetic oxide material in both science and engineering because it exhibits helimagnetism around room temperature (300 K). In this study, the magnetic phase diagram of Ba(Fe1?xScx)12O19 consisting of ferri-, heli-, antiferro-, and paramagnetic phases has been completed through magnetization and neutron diffraction measurements. The magnetic phase transition temperature to paramagnetism decreases with the increase in x, and the temperature at which the magnetization reaches a maximum, which corresponds to the magnetic phase transition from heli- to ferrimagnetism, is determined for low x crystals. The temperatures at which helimagnetism appears are precisely determined by observing the magnetic satellite reflection peaks in neutron diffraction at various temperatures, which characterize helimagnetism. Based on these results, the magnetic phase diagram of the Ba(Fe1?xScx)12O19 system is constructed in the T-x plane. Helimagnetism appears at x ? 0.06, and magnetism with antiferromagnetic components appears as the extension phase of helimagnetism at x ? 0.19 through the coexistence region. The turn angle ?0 of the helix for each x crystal is calculated from the relationship, ?0 = 2πδ, where δ is the incommensurability. The turn angle ?0 decreases with the increase in temperature for the same x crystal, and increases with the increase in x at the same temperature. Furthermore, it is found that there are clear thresholds at which ?0 cannot take values between 0°<?0 ? 90° and 170° ? ?0< 180°.

Key words

Helimagnetism/Hexagonal ferrite/Magnetic phase diagram/Single crystal of Ba(Fe1?xScx)12O19/TOF-Laue neutron diffraction/Turn angle of the helix

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量1
参考文献量31
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