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Ab initio theory of electron-phonon mediated ultrafast spin relaxation of laser-excited hot electrons in transition-metal ferromagnets

机译:电子-声子介导的过渡金属铁磁体中激光激发热电子超快自旋弛豫的从头算理论

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摘要

We report a computational theoretical investigation of electron spin-flip scattering induced by the electron-phonon interaction in the transition-metal ferromagnets bcc Fe, fcc Co, and fcc Ni. The Elliott-Yafet electron-phonon spin-flip scattering is computed from first principles, employing a generalized spin-flip Eliashberg function as well as ab initio computed phonon dispersions. Aiming at investigating the amount of electron-phonon mediated demagnetization in femtosecond laser-excited ferromagnets, the formalism is extended to treat laser-created thermalized as well as nonequilibrium, nonthermal hot electron distributions. Using the developed formalism we compute the phonon-induced spin lifetimes of hot electrons in Fe, Co, and Ni. The electron-phonon mediated demagnetization rate is evaluated for laser-created thermalized and nonequilibrium electron distributions. Nonthermal distributions are found to lead to a stronger demagnetization rate than hot, thermalized distributions, yet their demagnetizing effect is not enough to explain the experimentally observed demagnetization occurring in the subpicosecond regime.
机译:我们报告了在过渡金属铁磁体bcc Fe,fcc Co和fcc Ni中由电子-声子相互作用引起的电子自旋翻转散射的计算理论研究。 Elliott-Yafet电子-声子自旋翻转散射是根据第一原理计算的,采用了广义自旋翻转Eliashberg函数以及从头算起的声子色散。为了研究飞秒激光激发的铁磁体中电子-声子介导的退磁量,形式化扩展到处理激光产生的热化以及非平衡,非热的热电子分布。使用发达的形式主义,我们可以计算声子在Fe,Co和Ni中由热电子引起的声子自旋寿命。电子声子介导的退磁率针对激光产生的热化和非平衡电子分布进行评估。发现非热分布比热的,热化的分布导致更强的退磁率,但是它们的退磁效果不足以解释在皮秒范围内发生的实验观察到的退磁。

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