论文标题

基于钙钛矿的磁电效应的对称分析基于钙钛矿的多效应

Symmetry analysis of magnetoelectric effects in perovskite-based multiferroics

论文作者

Gareeva, Zukhra, Zvezdin, Anatoly, Zvezdin, Konstantin, Chen, Xiang Ming

论文摘要

In this article, we perform the symmetry analysis of perovskite-based multiferroics: bismuth ferrite (BiFeO3)-like, orthochromites (RCrO3), and Ruddlesden-Popper perovskites (Ca3Mn2O7-like), being the typical representatives of multiferroics of the trigonal, rhombic, and tetragonal crystal families and explore the effect of磁电特性上的晶体学畸变。我们确定每个考虑的结构的主阶参数,并获得与特定对称性一致的不变组合。这种方法使我们能够分析BIXR1-XFEO3化合物中结构相变的磁电效应的特征,并表明稀土sublattice会影响新结构的对称性允许的线性磁电效应。结果表明,正晶石的磁电特性归因于由于与CRO6 oct oct oct oct的旋转和变形而导致的磁性和电偶极矩之间的耦合。第一次,在对鲁德斯登 - popper结构的分析中实施了这种对称性考虑,这证明了在含有磁性阳离子的Ruddlesdensen-Popper阶段实现磁电效应的可能性,并允许估计其优化条件所需的磁性效应。

In this article, we perform the symmetry analysis of perovskite-based multiferroics: bismuth ferrite (BiFeO3)-like, orthochromites (RCrO3), and Ruddlesden-Popper perovskites (Ca3Mn2O7-like), being the typical representatives of multiferroics of the trigonal, rhombic, and tetragonal crystal families and explore the effect of crystallographic distortions on magnetoelectric properties. We determine the principal order parameters for each of the considered structures and obtain their invariant combinations consistent with the particular symmetry. This approach allowed us to analyze the features of the magnetoelectric effect observed during structural phase transitions in BixR1-xFeO3 compounds and show that the rare-earth sublattice gives an impact into the linear magnetoelectric effect allowed by the symmetry of the new structure. It is shown that the magnetoelectric properties of ortho-chromites are attributed to the couplings between the magnetic and electric dipole moments arising near Cr3+ ions due to distortions linked with rotations and deformations of the CrO6 octahedra. For the first time, such symmetry consideration was implemented in the analysis of the Ruddlesden-Popper structures, which demonstrates the possibility of realizing the magnetoelectric effect in the Ruddlesden-Popper phases containing magnetically active cations and allows to estimate conditions required for its optimization.

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