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Engineering an Insulating Ferroelectric Superlattice with a Tunable Band Gap from Metallic Components

机译:用金属部件的可调谐带隙工程用绝缘铁电超晶格

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The recent discovery of "polar metals" with ferroelectriclike displacements offers the promise of designing ferroelectrics with tunable energy gaps by inducing controlled metal-insulator transitions. Here we employ first-principles calculations to design a metallic polar superlattice from nonpolar metal components and show that controlled intermixing can lead to a true insulating ferroelectric with a tunable band gap. We consider a 2/2 superlattice made of two centrosymmetric metallic oxides, La0.75Sr0.25MnO3 and LaNiO3, and show that ferroelectriclike displacements are induced. The ferroelectriclike distortion is found to be strongly dependent on the carrier concentration (Sr content). Further, we show that a metal-toinsulator (MI) transition is feasible in this system via disproportionation of the Ni sites. Such a disproportionation and, hence, a MI transition can be driven by intermixing of transition metal ions between Mn and Ni layers. As a result, the energy gap of the resulting ferroelectric can be tuned by varying the degree of intermixing in the experimental fabrication method.
机译:最近具有铁电器般的位移的“极性金属”的发现提供了通过诱导受控金属绝缘体转换来设计具有可调谐能量间隙的铁电器的承诺。在这里,我们使用第一原理计算来设计来自非极性金属部件的金属极性超晶格,并且显示控制的混合可以导致具有可调谐带隙的真实绝缘铁电。我们考虑由两个亚里索二元金属氧化物制成的2/2超晶格,LA0.75SR0.25MNO3和LANIO3,并表明诱导铁电型位移。发现铁电状变形是强烈依赖于载流子浓度(Sr含量)。此外,我们表明,通过Ni位点​​的歧化,在该系统中可以在该系统中进行金属吐痰(MI)转变。因此,这种歧化和因此,可以通过在Mn和Ni层之间的过渡金属离子混合来驱动MI转换。结果,可以通过改变实验制造方法中的混合程度来调谐所得铁电的能隙。

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  • 来源
    《Physical review letters》 |2017年第17期|177603.1-177603.6|共6页
  • 作者单位

    Vanderbilt Univ Dept Phys & Astron Nashville TN 37235 USA|Oak Ridge Natl Lab Mat Sci & Technol Div Oak Ridge TN 37831 USA;

    Oak Ridge Natl Lab Mat Sci & Technol Div Oak Ridge TN 37831 USA;

    Vanderbilt Univ Dept Phys & Astron Nashville TN 37235 USA|Oak Ridge Natl Lab Mat Sci & Technol Div Oak Ridge TN 37831 USA;

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