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Ferroelectricity and Self-Polarization in Ultrathin Relaxor Ferroelectric Films

机译:超薄弛豫铁电薄膜中的铁电和自极化

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摘要

We report ferroelectricity and self-polarization in the (001) oriented ultrathin relaxor ferroelectric PMN-PT films grown on Nb-SrTiO3, SrRuO3 and La0.7Sr0.3MnO3, respectively. Resistance-voltage measurements and AC impedance analysis suggest that at high temperatures Schottky depletion width in a 4 nm thick PMN-PT film deposited on Nb-SrTiO3 is smaller than the film thickness. We propose that Schottky interfacial dipoles make the dipoles of the nanometer-sized polar nanoregions (PNRs) in PMN-PT films grown on Nb-SrTiO3 point downward at high temperatures and lead to the self-polarization at room temperature with the assistance of in-plane compressive strain. This work sheds light on the understanding of epitaxial strain effects on relaxor ferroelectric films and self-polarization mechanism.
机译:我们报告分别在Nb-SrTiO3,SrRuO3和La0.7Sr0.3MnO3上生长的(001)取向的超薄弛豫铁电PMN-PT膜中的铁电和自极化。电阻电压测量和交流阻抗分析表明,在高温下,沉积在Nb-SrTiO3上的4 nm厚PMN-PT膜中的肖特基耗尽层宽度小于膜厚。我们建议肖特基界面偶极子使在Nb-SrTiO3上生长的PMN-PT薄膜中的纳米级极性纳米区域(PNRs)的偶极子在高温下指向下方,并在室温下借助in-的作用导致自极化。平面压缩应变。这项工作为了解外延应变对弛豫铁电薄膜的影响和自极化机制提供了启示。

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