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Z型六角铁氧体随温度升高的磁畴结构变化的实时观测

Real-Time Observation of Magnetic Domain Structure Changes with Increasing Temperature for Z-Type Hexagonal Ferrite.

作者信息

Kim Sung-Dae, Park Ihho

机构信息

Advanced Metals Division, Korea Institute of Materials Science, 797 Changwondaero, Changwon 51508, Korea.

Department of Materials Testing & Evaluation, Korea Institute of Materials Science, 797 Changwondaero, Changwon 51508, Korea.

出版信息

Materials (Basel). 2022 May 20;15(10):3646. doi: 10.3390/ma15103646.

Abstract

Z-type hexagonal ferrites have recently received attention for their room-temperature magnetoelectric (ME), which is activated when the temperature at which the transverse-conical spin-state transitions to a ferrimagnetic state is increased. The changes in the magnetic domain structure at the transition have been well-documented; however, they are still not understood in detail. In the present study, Lorentz transmission electron microscopy (TEM) analysis combined with an in situ heating experiment was conducted to demonstrate the shift in magnetic domain structure during the transition from the transverse-conical spin arrangement to a ferrimagnetic spin order. The dynamics of the magnetic domain structure changes with the increasing temperature were acquired in real-time. At 490 K, the magnetization transition from the transverse-conical spin state to the ferromagnetic state was demonstrated. Cross-tie domain walls formed during the magnetic transition process. The increased effect of the demagnetizing field applied to the 180° magnetic domains was caused by a lower magnetocrystalline anisotropy (MCA) at the easy axis of magnetization.

摘要

Z型六角铁氧体最近因其室温磁电效应而受到关注,当横向锥形自旋态转变为亚铁磁态的温度升高时,这种效应会被激活。在转变过程中磁畴结构的变化已有充分记录;然而,其细节仍未被完全理解。在本研究中,进行了洛伦兹透射电子显微镜(TEM)分析并结合原位加热实验,以证明从横向锥形自旋排列到亚铁磁自旋序转变过程中磁畴结构的变化。随着温度升高,实时获取了磁畴结构变化的动力学过程。在490K时,证明了从横向锥形自旋态到铁磁态的磁化转变。在磁转变过程中形成了交叉连接畴壁。施加到180°磁畴的退磁场增强效应是由易磁化轴处较低的磁晶各向异性(MCA)引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/632c/9144379/d6db6091dc03/materials-15-03646-g001.jpg

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