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Long-range Stripe Nanodomains in Epitaxial (110) BiFeO3 Thin Films on (100) NdGaO3 Substrate

机译:(100)NdGaO3衬底上外延(110)BiFeO3薄膜中的远距离条纹纳米域

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摘要

Here, we report the observation of ferroelectric and ferroelastic nanodomains in (110)-oriented BiFeO3 (BFO) thin films epitaxially grown on low symmetric (100) NdGaO3 (NGO) substrate. We observed long range ordering of ferroelectric 109° stripe nanodomains separated by periodic vertical domain walls in as-grown 130 nm thick BFO films. The effect of La0.67Sr0.33CoO3 (LSCO) conducting interlayer on domain configurations in BFO/NGO film was also observed with relatively short range-ordering of stripe domains due to the modified electrostatic boundary conditions in BFO/LSCO/NGO film. Additional studies on B-site doping of Nb ions in BFO films showed change in the domain structures due to doping induced change in lattice anisotropy while maintaining the stripe domain morphology with 109° domain wall. This long-range array of ferroelectric and ferroelastic domains can be useful for optoelectronic devices and ferroelastic templates for strain coupled artificial magnetoelectric heterostructures.
机译:在这里,我们报告在低对称(100)NdGaO3(NGO)衬底上外延生长的(110)定向BiFeO3(BFO)薄膜中铁电和铁弹性纳米域的观察。我们观察到在生长的130 nm厚的BFO膜中,铁电体109°条纹纳米域的长程有序被周期性的垂直畴壁隔开。由于BFO / LSCO / NGO薄膜的静电边界条件发生了改变,在带状区域相对较短的范围内,还观察到了La0.67Sr0.33CoO3(LSCO)导电中间层对BFO / NGO薄膜中区域结构的影响。 BFO薄膜中Nb离子的B位置掺杂的其他研究表明,由于掺杂引起的晶格各向异性变化而使畴结构发生了变化,同时保持了109°畴壁的条纹畴形态。铁电和铁弹性域的这种长距离阵列可用于光电器件和用于应变耦合人工磁电异质结构的铁弹性模板。

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