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Effects of ferroelectric-poling-induced strain on the electronic transport and magnetic properties of (001)- and (111)-oriented La0.5Ba 0.5MnO3 thin films

机译:铁电极化引起的应变对(001)和(111)取向La0.5Ba 0.5MnO3薄膜的电子输运和磁性能的影响

摘要

We epitaxially grew La0.5Ba0.5MnO3 (LBMO) films on (001)- and (111)-oriented ferroelectric single-crystal substrates and reduced the in-plane tensile strain of LBMO films by poling the ferroelectric substrates along the 001 direction. Upon poling, a large decrease in the resistance and a considerable increase in the magnetization, Curie temperature, and magnetoresistance were observed for the LBMO film, which are driven by interface strain coupling. Such strain effects can be significantly enhanced by the application of a magnetic field. An overall analysis of the findings reveals that the mutual interaction between the strain and the magnetic field is mediated by the electronic phase separation which is sensitive to both strain and magnetic field. Our findings highlight that the electronic phase separation is crucial in understanding the electric-field-manipulated strain effects in manganite film/ferroelectric crystal heterostructures.
机译:我们在(001)和(111)取向的铁电单晶衬底上外延生长La0.5Ba0.5MnO3(LBMO)膜,并通过沿001方向极化铁电衬底来降低LBMO膜的面内拉伸应变。极化后,观察到由界面应变耦合驱动的LBMO膜的电阻大大降低,磁化强度,居里温度和磁阻显着增加。通过施加磁场可以显着增强这种应变效应。对发现的整体分析表明,应变和磁场之间的相互作用是由对应变和磁场都敏感的电子相分离介导的。我们的发现表明,电子相分离对于理解锰薄膜/铁电晶体异质结构中的电场控制应变效应至关重要。

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