首页> 外文期刊>The European physical journal, B. Condensed matter physics >Magnon scattering by a symmetric atomic well in free standing very thin magnetic films
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Magnon scattering by a symmetric atomic well in free standing very thin magnetic films

机译:独立的非常薄的磁性膜中对称原子阱的磁振子散射

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摘要

A theoretical model is presented for the study of the scattering of magnons at an extended symmetric atomic well in very thin magnetic films. The thin film consists of three cubic atomic planes with ordered spins coupled by Heisenberg exchange, and the system is supported on a non-magnetic substrate, and considered otherwise free from magnetic interactions. The coherent transmission and reflection scattering coefficients are derived as elements of a Landauer type scattering matrix. Transmission and reflection scattering cross sections are hence calculated specifically, as a function of the varying local magnetic exchange on the inhomogeneous boundary. Detailed numerical results for the individual incident film magnons, and for the calculated overall magnon conductance, show characteristic transmission properties, with associated Fano resonances, depending on the magnetic boundary conditions and on the magnon incidence.
机译:提出了一个理论模型,用于研究超薄磁膜中扩展对称原子阱上的马农散射。薄膜由三个立方原子平面组成,这些平面具有通过海森堡交换耦合的有序自旋,并且该系统支撑在非磁性衬底上,否则被认为没有磁性相互作用。相干透射和反射散射系数是作为Landauer型散射矩阵的元素得出的。因此,根据不均匀边界上变化的局部磁交换,可以具体计算出透射和反射散射截面。单个入射膜磁振子的详细数值结果以及计算出的整个磁振子电导,都显示出特征性的传输特性以及相关的Fano共振,具体取决于磁边界条件和磁振子入射。

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