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Spin orientation and excitation of magnetic nanocluster on metal surface

机译:金属表面上磁性纳米光刻的旋转方向和激发

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The spin orientation and excitation of the ferromagnetic nanocluster on the magnetic metal surface are studied numerically. We show that localized magnetic excitation modes are generated by the spin fluctuation of the cluster, when the ferromagnetic interaction J' between the cluster and the metal surface is small and the spins in the cluster are oriented in the opposite direction with those of the metal surface by the external field. This magnetic structure is similar to the domain wall (DW) structure of a ferromagnetic wire, both sides of which connect with metal surfaces. As the interaction J' increases, the sign of the thermal average of the spins in the cluster changes, i.e., the spin-flip takes place. In this time, the magnetic fluctuation of the cluster becomes large and the magnetic excitation energies, except for that of one excitation mode, overlap with the excitation spectrum of the spin wave. We also show that, by the overlap, sharp peaks and dips occur in the excitation spectrum of the spin wave.
机译:数值研究了磁性金属表面铁磁纳米团簇的自旋取向和激发。我们发现,当团簇与金属表面之间的铁磁相互作用J'很小,且团簇中的自旋在外场作用下与金属表面的自旋方向相反时,团簇的自旋涨落会产生局域磁激发模式。这种磁性结构类似于铁磁线的畴壁(DW)结构,其两侧与金属表面相连。随着相互作用J’的增加,团簇中自旋的热平均值的符号发生变化,即自旋翻转发生。此时,团簇的磁涨落变大,除一个激发模式外,磁激发能与自旋波的激发谱重叠。我们还发现,通过重叠,自旋波的激发谱出现了尖峰和低谷。

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