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Ferroelectric switching of band alignments in LSMO/PZT/Co multiferroic tunnel junctions: an ab initio study

机译:LSMO / PZT / CO多用途隧道交叉路口中带对齐的铁电切换:AB INITIO研究

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摘要

Band alignments in ferroelectric tunnel junctions (FTJs) are expected to play a critical role in determining the charge transport across the tunneling barrier. In general, however, the interface band discontinuities and their polarization dependence are not well known in these systems. Using a first-principles density-functional-theory approach, we explore the ferroelectric (FE) polarization dependence of the band alignments in La0.7Sr0.3MnO3/PbZr0.2Ti0.8O3/Co (LSMO/PZT/Co) multiferroic tunnel junctions, for which recent experiments indicated an ON/OFF conductivity behavior upon switching the PZT FE polarization. Our results on the pseudomorphic defect-free LSMO/PZT/Co FTJs evidence a major FE switching effect on the band discontinuities at both interfaces. Based on the changes in the band alignments, we provide a possible explanation for the observed trends in the resistive switching.
机译:铁电隧道结(FTJ)中的带对准预计在确定隧道屏障的电荷传输方面发挥着关键作用。 然而,通常,界面频带不连续性及其极化依赖性在这些系统中不公知。 使用第一原理的密度 - 功能理论方法,我们探讨了LA0.7SR0.3MNO3 / PBZR0.2TI0.8O3 / CO(LSMO / PZT / CO)多用语隧道连接中的带对准的铁电(FE)极化依赖性。 最近的实验在切换PZT Fe偏振时表明了开/关电导率行为。 我们的结果对伪形缺陷无缺陷LSMO / PZT / CO FTJS证据证明两个接口的带不连续性的主要FE切换效果。 基于带对准的变化,我们为电阻切换中的观察到趋势提供了可能的解释。

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