首页> 外文期刊>Journal of Physics. Condensed Matter >Impact of growth kinetics on the interface morphology and magnetization in La1/3Sr2/3FeO3/La2/3Sr1/3MnO3 heterostructures
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Impact of growth kinetics on the interface morphology and magnetization in La1/3Sr2/3FeO3/La2/3Sr1/3MnO3 heterostructures

机译:生长动力学对La1 / 3SR2 / 3FeO3 / La2 / 3SR1 / 3MNO3异质结构界面形态和磁化的影响

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摘要

The ability to create atomically perfect, epitaxial heterostructures of correlated complex perovskite oxides using state-of-art thin film deposition techniques has generated new physical phenomena at engineered interfaces. Here we report on the impact of growth kinetics on the magnetic structure and exchange coupling at the interface in heterostructures combining layers of antiferromagnetic La1/3Sr2/3FeO3 (LSFO) and ferromagnetic La2/3Sr1/3MnO3 (LSMO) on (0 0 1)-oriented SrTiO3 (STO) substrates. Two growth orders are investigated, (a) LSMO/LSFO/STO(0 0 1) and (b) LSFO/LSMO/STO(0 0 1), where the LSFO layer is grown by molecular beam epitaxy and the LSMO layer by high oxygen pressure sputtering. The interface has been investigated using electron microscopy and polarized neutron reflectometry. Interdiffusion over seven monolayers is observed in LSMO/LSFO (a) with an almost 50% reduction in magnetization at the interface and showing no exchange coupling. However, the exchange bias effect ( mT at 10 K) could be realized when the interface is atomically sharp, as in LSFO/LSMO (b). Our study therefore reveals that, even for well ordered and lattice-matched structures, the kinetics involved in the growth processes drastically influences the interface quality with a strong correlation to the magnetic properties.
机译:使用现实状态薄膜沉积技术创造具有原子上完美的相关性复合钙钛矿氧化物的外观结构的能力在工程界面产生了新的物理现象。在这里,我们报告了生长动力学对磁性结构和交换耦合的磁性结构和交换耦合的影响,其结合反铁磁性LA1 / 3SR2 / 3FeO3(LSFO)和铁磁性La2 / 3sR1 / 3MnO3(LSMO)(0 0 1) - 定向SRTIO3(STO)基板。研究了两个生长订单,(a)LSMO / LSFO / STO(0 0 1)和(B)LSFO / LSMO / STO(0 0 1),其中LSFO层由分子束外延和LSMO层高氧气压力溅射。使用电子显微镜和偏振中子反射率研究了该界面。在LSMO / LSFO(A)中观察到七种单层超过七个单层的相互积分,界面处的磁化差异几乎为50%并显示无交换耦合。然而,当接口是原子尖锐的情况下,可以实现交换偏置效应(10 k处),如在LSFO / LSMO(B)中。因此,我们的研究表明,即使对于良好的订购和晶格匹配的结构,涉及增长过程的动力学也大大影响了界面质量与磁性的强烈相关。

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