论文标题

电偶极子的新兴螺旋质地

Emergent helical texture of electric dipoles

论文作者

Khalyavin, Dmitry D., Johnson, Roger D., Orlandi, Fabio, Radaelli, Paolo G., Manuel, Pascal, Belik, Alexei A.

论文摘要

散装材料中磁偶极子的远距离顺序产生了广泛的磁性结构,从简单的共线铁磁体和抗铁磁铁到通过竞争交换相互作用稳定的复杂磁性螺旋纹理。相比之下,通常通常考虑在介电晶体中的介电晶体中的偶极顺序中,通常考虑平行(铁电)和反平行(抗纤维电离)线偶极线的界线比对。在这里,我们报告了通过四倍的钙钛矿BIMN7O12的轻孔掺杂对电偶极子的螺旋顺序的观察。与磁性类似,电偶极螺旋纹理也通过竞争不稳定性稳定。具体而言,轨道排序和孤独的电子对立体化学活动竞争,从非手持立方结构引起相变,通过中间密度波到不超高的电偶极子和轨道螺旋。

Long-range ordering of magnetic dipoles in bulk materials gives rise to a broad range of magnetic structures, from simple collinear ferromagnets and antiferromagnets, to complex magnetic helicoidal textures stabilized by competing exchange interactions. In contrast, in the context of dipolar order in dielectric crystals, only parallel (ferroelectric) and antiparallel (antiferroelectric) collinear alignments of electric dipoles are typically considered. Here, we report an observation of incommensurate helical ordering of electric dipoles by light hole-doping of the quadruple perovskite BiMn7O12. In analogy with magnetism, the electric dipole helicoidal texture is also stabilized by competing instabilities. Specifically, orbital ordering and lone electron pair stereochemical activity compete, giving rise to phase transitions from a non-chiral cubic structure, to an incommensurate electric dipole and orbital helix, via an intermediate density wave.

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