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Super spin-glass state and exchange bias in Fe/CoO hybrid nanostructures

机译:Fe / CoO杂化纳米结构中的超自旋玻璃态和交换偏压

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Fe/CoO heterostructures were realized by depositing Fe thin films on CoO nanoparticle arrays. Magnetization measurements revealed that 1 nm Fe exhibits a superparamagnetic behavior at 300 K and a super spin-glass state at temperatures below 80 K. The superparamagnetic as well as super spin-glass state vanishes for higher Fe film thicknesses once Fe starts to form a continuous layer across the CoO nanoparticle arrays. Furthermore, all samples exhibit an exchange bias effect at 6 K after field cooling, with a maximum exchange bias field of about 60 Oe for a Fe thickness of 2 nm. M-H loops of thicker Fe samples show a two-step magnetization reversal where Fe in the area in between CoO nanoparticles reverses at low fields, while, in proximity to the CoO nanoparticles, Fe switches at substantially higher fields. Both reversals are exchange biased.
机译:Fe / CoO异质结构是通过在CoO纳米颗粒阵列上沉积Fe薄膜来实现的。磁化测量表明,1 nm Fe在300 K时表现出超顺磁性,在80 K以下温度下表现出超自旋玻璃态。一旦Fe开始形成连续的层,对于更高的Fe膜厚度,该超顺磁态和超级自旋玻璃态便消失了。 CoO纳米颗粒阵列上的有机层。此外,所有样品在场冷却后在6 K处均表现出交换偏压效应,对于2 nm的Fe厚度,最大交换偏压场约为60 Oe。较厚的Fe样品的M-H回路显示了两步磁化反转,其中CoO纳米颗粒之间的区域中的Fe在低磁场下反转,而在靠近CoO纳米颗粒的地方,Fe在实质上更高的磁场下切换。两种冲销都存在汇率偏向。

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