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Ferromagnetism induced by entangled charge and orbital orderings in ferroelectric titanate perovskites

机译:钛铁酸盐钙钛矿中纠缠电荷和轨道有序引起的铁磁性

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摘要

In magnetic materials, the Pauli exclusion principle typically drives anti-alignment between electron spins on neighbouring species resulting in antiferromagnetic behaviour. Ferromagnetism exhibiting spontaneous spin alignment is a fairly rare behaviour, but once materialized is often associated with itinerant electrons in metals. Here we predict and rationalize robust ferromagnetism in an insulating oxide perovskite structure based on the popular titanate series. In half-doped layered titanates, the combination of Jahn-Teller and oxygen breathing motions opens a band gap and creates an unusual charge and orbital ordering of the Ti d electrons. It is argued that this intriguingly intricate electronic network favours the elusive inter-site ferromagnetic (FM) ordering, on the basis of intra-site Hund's rules. Finally, we find that the layered oxides are also ferroelectric with a spontaneous polarization approaching that of BaTiO3. The concepts are general and design principles of the technologically desirable FM ferroelectric multiferroics are presented.
机译:在磁性材料中,保利排斥原理通常会驱动相邻物种上电子自旋之间的反对准,从而导致反铁磁行为。表现出自发自旋对准的铁磁性是相当罕见的行为,但是一旦实现,通常与金属中的巡回电子有关。在这里,我们根据流行的钛酸酯系列预测并合理化了绝缘氧化物钙钛矿结构中的强磁性。在半掺杂的层状钛酸盐中,Jahn-Teller和氧气呼吸运动的组合打开了一个带隙,并产生了异常的Ti d电子的电荷和轨道有序。有人认为,基于站点内Hund规则,这种错综复杂的电子网络偏向于难以捉摸的站点间铁磁(FM)排序。最后,我们发现层状氧化物也是铁电体,其自发极化接近BaTiO3。这些概念是通用的,并介绍了技术上理想的FM铁电多铁体的设计原理。

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