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Dynamics Of Electron-magnon Interaction And Ultrafast Demagnetization In Thin Iron Films

机译:铁薄膜中电子-磁振子相互作用和超快退磁的动力学

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The electronic and spin dynamics in thin iron films have been investigated by means of time-resolved reflectivity and time-resolved magneto-optical Kerr effect. Combining the two techniques, it is possible to clarify the role of electron-phonon and electron-magnon interactions on the ultrafast magnetization dynamics. In particular, we show that the rapid (~100 fs) demagnetization is established at the electronic level through electron-magnon excitation, while the subsequent recovery of the spin order is attributed to the Elliott-Yafet spin-flip scattering process on a time scale slightly shorter than a picosecond. Both processes have characteristic time constants that undoubtedly differ from the measured electron-phonon coupling time of 240 fs.
机译:通过时间分辨的反射率和时间分辨的磁光克尔效应研究了铁薄膜中的电子和自旋动力学。结合这两种技术,可以阐明电子-声子和电子-磁子相互作用对超快磁化动力学的作用。特别是,我们表明,通过电子-磁振子的激发在电子级建立了快速的(〜100 fs)退磁,而自旋阶次的随后恢复归因于时间尺度上的Elliott-Yafet自旋翻转散射过程比皮秒短一点这两个过程都具有特征时间常数,该特征时间常数无疑与所测量的240 fs的电子-声子耦合时间不同。

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