首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >First-principles investigation on tunable electronic properties and magnetism by polarization in PbTiO3/BiFeO3 2D ferroelectric heterostructures
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First-principles investigation on tunable electronic properties and magnetism by polarization in PbTiO3/BiFeO3 2D ferroelectric heterostructures

机译:PBTIO3 / BIFEO3 2D铁电异质结构上极化调查可调谐电子特性和磁性的第一原理调查

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摘要

Perovskite oxide interfaces have been used recently as platforms for demonstrating rich physical properties that are not possessed by their bulk constituents. In this work, we will not only demonstrate rich physical properties at polar perovskite oxide interfaces, but also the tuning of such properties by switching the polarization in PbTiO3/tetragonal BiFeO3 (BFO) two-dimensional ferroelectric heterostructures (HSs). Our first-principles calculations reveal that both magnetism and conductivity can be induced by the discontinuity of the ferroelectric (FE) polarization and the valence states at the interface, and they can also be robustly manipulated by reversing polarization. These properties include the coupling between an interfacial twodimensional electron gas and magnetism, a transition from half-metal to band insulator or Mott insulator, and the conversion from G-type antiferromagnetic order to local ferromagnetic (FM) ordering, and finally, to the local C-type antiferromagnetic order (C-AFM). Furthermore, by setting different terminations, we can artificially control the local FM ordering that occurs arbitrarily in any one of the polarization directions, and we can even control whether the local FM ordering appears at the interface or at the surface. This novel control can be applied in the fabrication of memory devices for information storage where bits can be written by an electric field (to switch ferroelectric polarization) while reading magnetically. Such a device will drastically reduce energy consumption.
机译:近期使用钙钛矿界面作为用于证明其散装成分不具有的富物理性质的平台。在这项工作中,我们不仅可以在极性蠕动氧化物界面处展示丰富的物理性质,而且通过在PBTIO3 /四方BIFEO3(BFO)二维铁电异质结构(HSS)中切换偏振来调整这些性质。我们的第一原理计算揭示了磁性和电导率可以通过在界面处的铁电(Fe)偏振的不连续性和价态,并且它们也可以通过逆转极化来鲁棒地操纵。这些性质包括界面扭转电子气体和磁性之间的耦合,从半金属到带绝缘子或Mott绝缘体的过渡,以及从G型反铁磁序列的转换到局部铁磁性(FM)排序,最后到局部C型反铁磁阶(C-AFM)。此外,通过设置不同的终端,我们可以人工控制在任何一个偏振方向上任意发生的本地FM订单,并且我们甚至可以控制本地FM订购是否出现在接口或表面上。该新颖控制可以应用于用于信息存储器的存储器设备的制造,其中可以通过电场(切换铁电偏振)在磁性上读取的比特。这种装置将大大降低能耗。

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