论文标题

部分可观测时空混沌系统的无模型预测

Spin re-orientation induced anisotropic magnetoresistance switching in LaCo$_{0.5}$Ni$_{0.5}$O$_{3-δ}$ thin films

论文作者

Sreejith, P. K., Suraj, T. S., Vasili, Hari Babu, Sreya, Suresh, Gargiani, Pierluigi, Sethupathi, K., Cespedes, Oscar, Sankaranarayanan, V., Rao, M. S. Ramachandra

论文摘要

通过在稀土钙钛矿氧化薄膜中调整磁相互作用来实现新功能,从而开辟了令人兴奋的技术前景。应变诱导的稀土co架和镍盐中磁相互作用的调整由于其在电子传输性能中的多功能性而具有至关重要的重要性。在这里,我们报道了自旋重新定位引起的各向异性磁阻(AMR)的切换及其在外部上马laco $ _ {0.5} $ ni $ _ {0.5} $ _ {0.5} $ o $ $ $ _ {3-δ} $薄膜中的可调性。此外,通过应变调整,我们可以在磁过渡温度中观察到AMR中AMR的两倍至四倍的对称性交叉。磁化测量结果表明,在50 K附近的铁磁转变开始,并且温度进一步降低显示磁化动力学发生了细微的变化,从而降低了铁磁的长距离顺序并在系统中引入了玻璃感。 X射线吸收和X射线磁性圆形二色症光谱测量值和Ni L边缘上的测量显示了磁性转变温度以下的CO自旋状态过渡,导致AMR开关,以及Ni $^{2+} $和CO $ $^{4+} $的存在,证明了从Ni到Co ions的电荷转移。我们的工作证明了磁相互作用的可调性介导了钴甲酸盐薄膜中的电子传输,这与了解其技术应用中的Ni-CO相互作用(例如AMR传感器中)相关。

Realization of novel functionalities by tuning magnetic interactions in rare earth perovskite oxide thin films opens up exciting technological prospects. Strain-induced tuning of magnetic interactions in rare earth cobaltates and nickelates is of central importance due to their versatility in electronic transport properties. Here we reported the spin re-orientation induced switching of anisotropic magnetoresistance (AMR) and its tunability with strain in epitaxial LaCo$_{0.5}$Ni$_{0.5}$O$_{3-δ}$ thin films across the ferromagnetic transition. Moreover, with strain tuning, we could observe a two-fold to four-fold symmetry crossover in AMR across the magnetic transition temperature. The magnetization measurements revealed an onset of ferromagnetic transition around 50 K, and a further reduction in temperature showed a subtle change in the magnetization dynamics, which reduced the ferromagnetic long-range ordering and introduced glassiness in the system. X-ray absorption and X-ray magnetic circular dichroism spectroscopy measurements over Co and Ni L edges revealed the Co spin state transition below the magnetic transition temperature leading to the AMR switching and also the presence of Ni$^{2+}$ and Co$^{4+}$ ions evidencing the charge transfer from Ni to Co ions. Our work demonstrated the tunability of magnetic interactions mediated electronic transport in cobaltate-nickelate thin films, which is relevant in understanding Ni-Co interactions in oxides for their technological applications such as in AMR sensors.

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