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Spin-polarization transfer in colloidal magnetic-plasmonic au/iron oxide hetero-nanocrystals

机译:胶体磁等离子体金/氧化铁杂纳米晶体中的自旋极化转移

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摘要

We report on the unprecedented direct observation of spin-polarization transfer across colloidal magneto-plasmonic Au@Fe-oxide core@shell nanocrystal heterostructures. A magnetic moment is induced into the Au domain when the magnetic shell contains a reduced Fe-oxide phase in direct contact with the noble metal. An increased hole density in the Au states suggested occurrence of a charge-transfer process concomitant to the magnetization transfer. The angular to spin magnetic moment ratio, morb/mspin, for the Au 5d states, which was found to be equal to 0.38, appeared to be unusually large when compared to previous findings. A mechanism relying on direct hybridization between the Au and Fe states at the core/shell interface is proposed to account for the observed transfer of the magnetic moment.
机译:我们报告了前所未有的直接观察到胶体磁电浆Au @ Fe-氧化物核@壳纳米晶体异质结构的自旋极化转移。当磁性外壳包含与贵金属直接接触的还原的Fe-氧化物相时,会在Au域中感应出一个磁矩。在Au状态中增加的空穴密度表明发生了与磁化转移相伴的电荷转移过程。与以前的发现相比,Au 5d态的角旋磁矩比morb / mspin等于0.38,显得异常大。提出了一种依赖于核/壳界面处的Au和Fe态之间直接杂交的机制来解释所观察到的磁矩传递。

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