论文标题

合金中的自旋波在有限温度下:Feco Magnonic Crystal的应用

Spin waves in alloys at finite temperatures: application for FeCo magnonic crystal

论文作者

Paischer, Sebastian, Buczek, Paweł A., Buczek, Nadine, Eilmsteiner, David, Ernst, Arthur

论文摘要

从理论上讲,我们研究温度和混乱对宏伟晶体Fe $ _ {1-C} $ CO $ $ _ {C} $的自旋波谱的影响。我们的形式主义是基于对海森堡哈密顿量的分析,并通过波向量和频率依赖性的横向磁敏感性。输入模型的交换积分是从\ emph {ab intio}磁力定理获得的。使用相干电位近似来治疗疾病和随机相位近似,以说明有限温度下磁蛋白光谱的软化。事实证明,该合金具有用于自旋型应用的许多优势性能。除了高质量温度外,其宏伟的带隙在升高的温度下保持稳定,并且在很大程度上不受疾病的影响。我们特别注意合金引入的镁质的衰减。由于与CO浓度的交换积分值的非平凡演化,阻尼是杂质浓度的非单调函数。该疾病引起的磁化剂的阻尼估计要比其Landau阻尼小得多。

We study theoretically the influence of the temperature and disorder on the spin wave spectrum of the magnonic crystal Fe$_{1-c}$Co$_{c}$. Our formalism is based on the analysis of a Heisenberg Hamiltonian by means of the wave vector and frequency dependent transverse magnetic susceptibility. The exchange integrals entering the model are obtained from the \emph{ab initio} magnetic force theorem. The coherent potential approximation is employed to treat the disorder and random phase approximation in order to account for the softening of the magnon spectrum at finite temperatures. The alloy turns out to exhibit many advantageous properties for spintronic applications. Apart from high Curie temperature, its magnonic bandgap remains stable at elevated temperatures and is largely unaffected by the disorder. We pay particular attention to the attenuation of magnons introduced by the alloying. The damping turns out to be a non-monotonic function of the impurity concentration due to the non-trivial evolution of the value of exchange integrals with the Co concentration. The disorder induced damping of magnons is estimated to be much smaller than their Landau damping.

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