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Epitaxial growth of highly-crystalline spinel ferrite thin films on perovskite substrates for all-oxide devices

机译:在全氧化物器件的钙钛矿衬底上外延生长高结晶尖晶石铁氧体薄膜

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摘要

The potential growth modes for epitaxial growth of Fe3O4 on SrTiO3 (001) are investigated through control of the energetics of the pulsed-laser deposition growth process (via substrate temperature and laser fluence). We find that Fe3O4 grows epitaxially in three distinct growth modes: 2D-like, island, and 3D-to-2D, the last of which is characterized by films that begin growth in an island growth mode before progressing to a 2D growth mode. Films grown in the 2D-like and 3D-to-2D growth modes are atomically flat and partially strained, while films grown in the island growth mode are terminated in islands and fully relaxed. We find that the optimal structural, transport, and magnetic properties are obtained for films grown on the 2D-like/3D-to-2D growth regime boundary. The viability for including such thin films in perovskite-based all-oxide devices is demonstrated by growing a Fe3O4/La0.7Sr0.3MnO3 spin valve epitaxially on SrTiO3.
机译:通过控制脉冲激光沉积生长过程的能量(通过衬底温度和激光通量),研究了Fe3O4在SrTiO3(001)上外延生长的潜在生长模式。我们发现,Fe3O4以三种不同的生长方式外延生长:2D状,岛状和3D到2D,最后一个特征在于薄膜开始以岛状生长方式生长,然后发展为2D增长方式。以2D类和从3D到2D生长模式生长的膜在原子上是平坦的且部分应变,而以岛生长模式生长的膜在岛中终止并完全松弛。我们发现,对于在2D样/ 3D到2D的生长区域边界上生长的薄膜,可以获得最佳的结构,传输和磁性。通过在SrTiO3上外延生长Fe3O4 / La0.7Sr0.3MnO3自旋阀,可以证明在钙钛矿基全氧化物器件中包含此类薄膜的可行性。

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