论文标题

多效性六角形YBFEO3薄膜中的磁电耦合和解耦

Magnetoelectric coupling and decoupling in multiferroic hexagonal YbFeO3 thin films

论文作者

Yun, Yu, Li, Xin, Thind, Arashdeep Singh, Yin, Yuewei, Liu, Hao, Li, Qiang, Wang, Wenbin, Diaye, Alpha T. N, Mellinger, Corbyn, Jiang, Xuanyuan, Mishra, Rohan, Xu, Xiaoshan

论文摘要

多效材料中铁电和磁性之间的耦合以及磁电(ME)效应的性质是持久的实验挑战。在这项工作中,我们研究了磁化对铁电转换的响应,薄膜六角形YBFEO3是一种原型不当多效性。使用X射线磁性圆形二色性(XMCD)测量,可以揭示散装ME解耦和潜在的域壁ME耦合,并具有基于原位的铁电偏振开关。我们的Landau理论分析表明,大量的ME耦合铁电开关路径的能量屏障比ME耦合路径的能量屏障更高。这种额外的屏障能也太高,无法通过将单个磁性域分为多域的过程中的磁静态能量降低。此外,兰道理论预测的铁电域壁周围磁化的还原可能会引起域壁Me耦合,其中磁化强度与铁电域壁的密度相关。这些结果提供了重要的实验证据和理论上的见解,以了解我在六角形铁岩中耦合的丰富可能性,例如通过电场操纵磁性状态。

The coupling between ferroelectric and magnetic orders in multiferroic materials and the nature of magnetoelectric (ME) effects are enduring experimental challenges. In this work, we have studied the response of magnetization to ferroelectric switching in thin-film hexagonal YbFeO3, a prototypical improper multiferroic. The bulk ME decoupling and potential domain-wall ME coupling were revealed using x-ray magnetic circular dichroism (XMCD) measurements with in-situ ferroelectric polarization switching. Our Landau theory analysis suggests that the bulk ME-coupled ferroelectric switching path has a higher energy barrier than that of the ME-decoupled path; this extra barrier energy is also too high to be reduced by the magneto-static energy in the process of breaking single magnetic domains into multi-domains. In addition, the reduction of magnetization around the ferroelectric domain walls predicted by the Landau theory may induce the domain-wall ME coupling in which the magnetization is correlated with the density of ferroelectric domain walls. These results provide important experimental evidence and theoretical insights into the rich possibilities of ME couplings in hexagonal ferrites, such as manipulating the magnetic states by an electric field.

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