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Robust antiferromagnetic coupling in hard-soft bi-magnetic core/shell nanoparticles

机译:硬-软双磁核/壳纳米粒子中的强反铁磁耦合

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The growing miniaturization demand of magnetic devices is fuelling the recent interest in bi-magnetic nanoparticles as ultimate small components. One of the main goals has been to reproduce practical magnetic properties observed so far in layered systems. In this context, although useful effects such as exchange bias or spring magnets have been demonstrated in core/shell nanoparticles, other interesting key properties for devices remain elusive. Here we show a robust antiferromagnetic (AFM) coupling in core/shell nanoparticles which, in turn, leads to the foremost elucidation of positive exchange bias in bi-magnetic hard-soft systems and the remarkable regulation of the resonance field and amplitude. The AFM coupling in iron oxide — manganese oxide based, soft/hard and hard/soft, core/shell nanoparticles is demonstrated by magnetometry, ferromagnetic resonance and X-ray magnetic circular dichroism. Monte Carlo simulations prove the consistency of the AFM coupling. This unique coupling could give rise to more advanced applications of bi-magnetic core/shell nanoparticles.
机译:磁性器件不断增长的小型化需求正在推动人们对双磁性纳米颗粒作为终极小组件的兴趣。主要目标之一是再现迄今为止在分层系统中观察到的实用磁性能。在这种情况下,尽管已在核/壳纳米粒子中证明了诸如交换偏压或弹簧磁体之类的有用效果,但器件的其他有趣关键特性仍然难以捉摸。在这里,我们显示了核/壳纳米粒子中强大的反铁磁(AFM)耦合,这反过来又导致了对双磁硬-软系统中正交换偏置的首先阐明以及对共振场和振幅的显着调节。通过磁力分析,铁磁共振和X射线磁性圆二色性证明了氧化铁-氧化锰基软/硬和硬/软核/壳纳米粒子中的AFM耦合。蒙特卡洛仿真证明了AFM耦合的一致性。这种独特的耦合可以引起双磁性核/壳纳米粒子的更高级应用。

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