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Distinct magnetism in ultrathin epitaxial NiFe_2O_4 films on MgAl_2O_4 and SrTiO_3 single crystalline substrates

机译:MgAl_2O_4和SrTiO_3单晶衬底上超薄外延NiFe_2O_4薄膜中的独特磁性

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摘要

Spinel ferrites are being considered for advanced spintronic applications. Here, we report on the magnetic properties of ultrathin (3-37 nm) epitaxial films of NiFe_2O_4 (NFO) on MgAl_2O_4 (MAO) and SrTiO_3 (STO) single crystalline substrates. It is found that NFO films on STO display superparamagnetic response down to 50 K, whereas films grown on MAO display ferrimagnetic response up to room temperature. Microstructural information indicates that this distinct response can be attributed to the different growth mechanisms of the spinel ferrite on the isostructural MAO substrate (two-dimensional growth) and the perovskite STO (Volmer-Weber three-dimensional growth). We discuss the reasons for this distinct behavior and its relevance for the integration of ferrites in epitaxial heterostructures for tunnel devices.
机译:尖晶石铁氧体正在考虑用于高级自旋电子学应用。在这里,我们报道了在MgAl_2O_4(MAO)和SrTiO_3(STO)单晶衬底上的NiFe_2O_4(NFO)超薄(3-37 nm)外延膜的磁性。发现在STO上的NFO膜显示低至50 K的超顺磁响应,而在MAO上生长的膜显示高达室温的亚铁磁响应。微观结构信息表明,这种独特的响应可以归因于尖晶石铁素体在同构MAO衬底(二维生长)和钙钛矿STO(Volmer-Weber三维生长)上的不同生长机制。我们讨论了这种独特行为的原因及其与隧道设备外延异质结构中铁素体集成的相关性。

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