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Control of ferroelectricity and magnetism in multi-ferroic BiFeO3 by epitaxial strain

机译:外延应变控制多铁性BiFeO3中的铁电和磁性

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摘要

Recently, strain engineering has been shown to be a powerful and flexible means of tailoring the properties of ABO3 perovskite thin films. The effect of epitaxial strain on the structure of the perovskite unit cell can induce a host of interesting effects, these arising from either polar cation shifts or rotation of the oxygen octahedra, or both. In the multi-ferroic perovskite bismuth ferrite (BiFeO3–BFO), both degrees of freedom exist, and thus a complex behaviour may be expected as one plays with epitaxial strain. In this paper, we review our results on the role of strain on the ferroic transition temperatures and ferroic order parameters. We find that, while the Néel temperature is almost unchanged by strain, the ferroelectric Curie temperature strongly decreases as strain increases in both the tensile and compressive ranges. Also unexpected is the very weak influence of strain on the ferroelectric polarization value. Using effective Hamiltonian calculations, we show that these peculiar behaviours arise from the competition between antiferrodistortive and polar instabilities. Finally, we present results on the magnetic order: while the cycloidal spin modulation present in the bulk survives in weakly strained films, it is destroyed at large strain and replaced by pseudo-collinear antiferromagnetic ordering. We discuss the origin of this effect and give perspectives for devices based on strain-engineered BiFeO3.
机译:最近,应变工程已被证明是一种强大且灵活的方法,可以调整ABO3钙钛矿薄膜的性能。外延应变对钙钛矿晶胞结构的影响可引起许多有趣的作用,这些作用是由极性阳离子位移或氧八面体的旋转或两者引起的。在多铁钙钛矿铋铁氧体(BiFeO3-BFO)中,两个自由度都存在,因此,随着外延应变的作用,可以预期复杂的行为。在本文中,我们回顾了关于应变对铁素体转变温度和铁素体阶数参数的作用的结果。我们发现,虽然尼尔温度几乎不受应变的影响,但铁电居里温度却随着应变在拉伸和压缩范围内的增加而大大降低。同样出乎意料的是,应变对铁电极化值的影响很小。使用有效的哈密顿量计算,我们证明了这些特殊行为是由反铁变形和极地不稳定性之间的竞争引起的。最后,我们给出了有关磁阶的结果:尽管存在于主体中的摆线自旋调制在弱应变薄膜中得以幸存,但在大应变下会被破坏,并被伪共线反铁磁有序所取代。我们讨论了这种影响的根源,并为基于应变设计的BiFeO3的器件提供了前景。

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