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Short-range and long-range contributions to the size effect in metal-ferroelectric-metal heterostructures

机译:近距离和远距离对金属铁电金属异质结构中尺寸效应的贡献

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摘要

The size-effect problem in metal-ferroelectric-metal heterostructures is analyzed in terms of the multiscale scheme-which combines phenomenology and first-principles calculations-recently developed by the authors. We demonstrate how this effect can be separated into two distinct contributions: a long-range electrostatic and a short-range "chemical" one. The formulated approach is applied to the description of SrRuO_3/BaTiO_3/SrRuO_3 heterostructures with different types of ferroelectric terminations (TiO_2-TiO_2 or RuO_2-RuO_2). It is shown that the balance between the long-range and the short-range contributions to the size effect can be essentially affected by the type of termination of the ferroelectric and by the polarization hardness of the electrode. The analysis presented demonstrates the leading role of the long-range contribution to the size effect in SrRuO_3/BaTiO_3/SrRuO_3 heterostructures.
机译:根据作者最近开发的多尺度方案(结合了现象学和第一性原理计算),对金属-铁电-金属异质结构中的尺寸效应问题进行了分析。我们演示了如何将这种影响分为两个不同的贡献:远程静电和短期“化学”贡献。该方法适用于描述具有不同类型铁电端基(TiO_2-TiO_2或RuO_2-RuO_2)的SrRuO_3 / BaTiO_3 / SrRuO_3异质结构。结果表明,对尺寸效应的长距离和短距离影响之间的平衡基本上可以受到铁电端接类型和电极极化硬度的影响。提出的分析表明,在SrRuO_3 / BaTiO_3 / SrRuO_3异质结构中,远距离贡献对尺寸效应起着主导作用。

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