论文标题

在混合抗体型抗fiferromagnet中调整磁电力

Tuning magnetoelectricity in a mixed-anisotropy antiferromagnet

论文作者

Fogh, Ellen, Klemke, Bastian, Reehuis, Manfred, Bourges, Philippe, Niedermayer, Christof, Holm-Dahlin, Sonja, Zaharko, Oksana, Schefer, Jürg, Kristensen, Andreas B., Sørensen, Michael K., Paeckel, Sebastian, Pedersen, Kasper S., Hansen, Rasmus E., Pages, Alexandre, Moerner, Kimmie K., Meucci, Giulia, Soh, Jian-Rui, Bombardi, Alessandro, Vaknin, David, Rønnow, Henrik. M., Syljuåsen, Olav F., Christensen, Niels B., Toft-Petersen, Rasmus

论文摘要

与用于数据存储和设备(例如传感器或触角的设备)的材料相关的磁化和电化层的控制很有吸引力。在磁电材料中,这些自由度紧密耦合,从而使极化可以通过磁场控制,并通过电场进行磁化,但是在单相磁磁电特性施用的情况下,效果的幅度仍然是一个挑战。我们证明了混合 - 动脉互是抗FiferRomagnet lini $ _ {1-x} $ fe $ _x $ po $ _4 $的磁性特性,通过在过渡金属上更换ni $^{2+} $ ions的ni $^{2+} $ ions $^{2+} $ ions in Transition Melet in Pressionition Metal Seret。这引入了随机位点依赖性的单离子各向异性能量,并导致系统的磁对称性降低。反过来,在父级化合物中对称对称性的磁极耦合,linipo $ _4 $和lifepo $ _4 $,解锁,并且通过两个数量级增强了主耦合。我们的结果证明了混合肛门磁体对调谐磁电特性的潜力。

Control of magnetization and electric polarization is attractive in relation to tailoring materials for data storage and devices such as sensors or antennae. In magnetoelectric materials, these degrees of freedom are closely coupled, allowing polarization to be controlled by a magnetic field, and magnetization by an electric field, but the magnitude of the effect remains a challenge in the case of single-phase magnetoelectrics for application. We demonstrate that the magnetoelectric properties of the mixed-anisotropy antiferromagnet LiNi$_{1-x}$Fe$_x$PO$_4$ are profoundly affected by replacing a fraction of the Ni$^{2+}$ ions with Fe$^{2+}$ on the transition metal site. This introduces random site-dependent single-ion anisotropy energies and causes a lowering of the magnetic symmetry of the system. In turn, magnetoelectric couplings that are symmetry-forbidden in the parent compounds, LiNiPO$_4$ and LiFePO$_4$, are unlocked and the dominant coupling is enhanced by two orders of magnitude. Our results demonstrate the potential of mixed-anisotropy magnets for tuning magnetoelectric properties.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源