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Preparation of a heteroepitaxial LaxSryMnzO3/BiFeO3 bilayer by r.f. magnetron sputtering with various oxygen gas flow ratios

机译:通过r.f.制备异质外延LaxSryMnzO3 / BiFeO3双层。各种氧气流量比的磁控溅射

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BiFeO3 (BFO) and LaxSryMnzO3 (LSMO) films were epitaxially grown on SrTiO3 (100) substrates by r.f. magnetron sputtering with various oxygen gas flow ratios (F O2). Compositional ratios of each atom in both of BFO and LSMO could be controlled kept to around 10 at.% by changing F O2. Adjusting the compositional ratio to La0.35Sr0.15Mn0.5O3 not only increase T c of LSMO but also produces sufficient oxygen to form a perovskite lattice. For an LSMO/BFO heterostructure, detailed observation by cross sectional transmission electron microscopy (TEM) revealed that the lattice of rhombohedral (SG: R-3c) LSMO was shrank by a clamping effect from the SrTiO3 substrates, and then the BFO was grown in two layers: (i) an interfacial BFO layer (7 nm thick) with evenly shrunk a-axis and c-axis, and (ii) an upper BFO layer (25 nm thick) expanded along the c-axis. Neither misfit strain nor dislocations appeared at the interface between the shrunken BFO and LSMO layers, and these heterostructures did not show exchange bias. These results suggest that BFO is suitable for a tunneling barrier combine with LSMO electrode.
机译:BiFeO3(BFO)和LaxSryMnzO3(LSMO)膜通过r.f外延生长在SrTiO3(100)衬底上。各种氧气流量比(F O2)的磁控溅射。通过改变F O2,可以将BFO和LSMO中每个原子的组成比控制在10 at。%左右。将组成比调整为La0.35Sr0.15Mn0.5O3不仅增加了LSMO的T c,而且产生了足够的氧以形成钙钛矿晶格。对于LSMO / BFO异质结构,通过横截面透射电子显微镜(TEM)进行的详细观察显示,菱形(SG:R-3c)LSMO的晶格由于受SrTiO3衬底的夹持作用而收缩,然后在BMO中生长BFO。两层:(i)a轴BFO层(厚7 nm),a轴和c轴均匀收缩;(ii)BFO上层(25 nm厚)沿c轴扩展。在收缩的BFO和LSMO层之间的界面上都没有出现失配应变也没有位错,并且这些异质结构没有显示交换偏差。这些结果表明,BFO适用于与LSMO电极结合的隧穿势垒。

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