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Ultrafast spin dynamics in metallic layers and strongly correlated oxides

机译:金属层和强相关氧化物中的超快自旋动力学

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The spin dynamics triggered by an ultrashort optical excitation can lead to a variety of behaviors depending on the specific spin and electronic structure of the material. In metallic films, electron-quasiparticles (phonons and magnons) interactions takes place on sub-picosecond timescale and demagnetization is established within 100 fs. In half-metal oxides, spin dynamics is much slower (100 ps) due to the inhibition of spin-flip processes. Furthermore, the dynamics of magnetic anisotropies can be exploited to control the magnetization in ferromagnets. Optically-induced reversible switching of the magnetization has been recently demonstrated in thin magnetic layers on the 100 picoseconds timescale.
机译:根据材料的特定自旋和电子结构,由超短光激发触发的自旋动力学可导致多种行为。在金属膜中,电子-准粒子(声子和磁振子)的相互作用在亚皮秒级的时间范围内发生,并且消磁在100 fs内建立。在半金属氧化物中,由于抑制了自旋翻转过程,自旋动力学要慢得多(100 ps)。此外,可以利用磁各向异性的动力学来控制铁磁体中的磁化强度。最近已在100皮秒的时间尺度上在薄磁性层中证明了光诱导的磁化可逆转换。

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