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在正交锰氧化物RMnO₃(R = La-Lu)中实现多铁性E型磁序的策略。

Strategy for achieving multiferroic E-type magnetic order in orthorhombic manganites RMnO (R = La-Lu).

作者信息

Xu Lanlan, Meng Junling, Liu Qingshi, Meng Jian, Liu Xiaojuan, Zhang Hongjie

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.

出版信息

Phys Chem Chem Phys. 2020 Mar 7;22(9):4905-4915. doi: 10.1039/c9cp06275k. Epub 2020 Feb 19.

Abstract

Based on first-principles calculations, multiferroic properties of orthorhombic manganites (RMnO, R = La-Lu) with E-type ground state have been achieved by lanthanide contraction (chemical pressure) and/or external strain. Our research demonstrates that a smaller R radius within the octahedral voids in RMnO results in the increase in the tilts of the octahedra but only a gentle change in the Jahn-Teller (JT) distortion. The reduction of the intraplane octahedral rotation angle and the narrowed e states and lifting t band edge are mainly responsible for the intraplane magnetic transition from ferromagnetic (La-Gd) to zigzag-like spin arrangement (Ho-Lu). In turn, the center-broken E-type RMnO bulk characterizes the dominated electronic polarization behavior, benefiting from their distortion response to small R substitution, which gives rise to the strong magnetoelectricity. Subsequently, we have figured out the strain strategy for obtaining an E-type transition in light rare-earth manganites (La-Gd) by imposing a series of hypothetical strains, where the small intraplane rotation angle (Θ) and large JT distortion favor the small aspect ratios of a/b and c/b, respectively. The strained LaMnO and GdMnO achieve E-type transitions successfully by imposing a modest compressive strain along the a- and c-axes and remaining free along the b-direction. Simultaneously, their polarization behaviors were comparatively studied. It was found that the size of the A-site rare-earth ions has a great influence on the external strain response, in addition to its effect on the magnetic phase transition.

摘要

基于第一性原理计算,通过镧系收缩(化学压力)和/或外部应变,实现了具有E型基态的正交锰酸盐(RMnO,R = La-Lu)的多铁性。我们的研究表明,RMnO八面体空隙中较小的R半径会导致八面体倾斜度增加,但 Jahn-Teller(JT)畸变仅有轻微变化。面内八面体旋转角的减小、e 态变窄以及 t 带边缘的提升主要导致了面内磁转变,从铁磁态(La-Gd)转变为锯齿状自旋排列(Ho-Lu)。反过来,中心断裂的 E 型 RMnO 块体表现出主导的电子极化行为,这得益于它们对小 R 替代的畸变响应,从而产生强磁电效应。随后,我们通过施加一系列假设应变,找出了在轻稀土锰酸盐(La-Gd)中获得 E 型转变的应变策略,其中小的面内旋转角(Θ)和大的 JT 畸变分别有利于 a/b 和 c/b 的小长宽比。通过沿 a 轴和 c 轴施加适度的压缩应变,同时在 b 方向保持自由,应变的 LaMnO 和 GdMnO 成功实现了 E 型转变。同时,对它们的极化行为进行了比较研究。结果发现,A 位稀土离子的尺寸除了对磁相变有影响外,对外部应变响应也有很大影响。

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