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Nonmonotonic inelastic tunneling spectra due to surface spin excitations in ferromagnetic junctions

机译:铁磁结中的表面自旋激发引起的非单调非弹性隧穿谱

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The paper addresses inelastic spin-flip tunneling accompanied by surface spin excitations (magnons) in ferromagnetic junctions. The inelastic tunneling current is proportional to the magnon density of states which is energy-independent for the surface waves and, for this reason, cannot account for the bias-voltage dependence of the observed inelastic tunneling spectra. This paper shows that the bias-voltage dependence of the tunneling spectra can arise from the tunneling matrix elements of the electron-magnon interaction. These matrix elements are derived from the Coulomb exchange interaction using the itinerant-electron model of magnon-assisted tunneling. The results for the inelastic tunneling spectra, based on the nonequilibrium Green's function calculations, are presented for both parallel and antiparallel magnetizations in the ferromagnetic leads.
机译:本文讨论了在铁磁结中伴随有表面自旋激发(磁振子)的非弹性自旋翻转隧穿。非弹性隧穿电流与状态的磁振密度成正比,这与表面波的能量无关,因此,它不能解释观察到的非弹性隧穿光谱的偏置电压依赖性。本文表明,隧穿谱的偏置电压依赖性可能源于电子-马农相互作用的隧穿矩阵元素。这些矩阵元素是使用磁振辅助隧穿的迭代电子模型从库仑交换相互作用得出的。给出了基于非平衡格林函数计算的非弹性隧道谱结果,用于铁磁导线中的平行和反平行磁化。

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