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Inhomogeneous magnon scattering during ultrafast demagnetization

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arxiv 1810.10994 v1 pith:QKRCWPPR submitted 2018-10-25 cond-mat.mtrl-sci cond-mat.other

classification cond-mat.mtrl-scicond-mat.other
keywords magnonalloyingdemagnetizationenhancedultrafastatomsdelayeddiffusion
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abstract

Ni$_{0.8}$Fe$_{0.2}$ (Py) and Py alloyed with Cu exhibit intriguing ultrafast demagnetization behavior, where the Ni magnetic moment shows a delayed response relative to the Fe, an effect which is strongly enhanced by Cu alloying. We have studied a broad range of Cu concentrations to elucidate the effects of Cu alloying in Py. The orbital/spin magnetic moment ratios are largely unaffected by Cu alloying, signifying that Cu-induced changes in the ultrafast demagnetization are not related to spin-orbit interactions. We show that magnon diffusion can explain the delayed Ni response, which we attribute to an enhanced magnon generation rate in the Fe sublattice relative to the Ni sublattice. Furthermore, Py exhibits prominent RKKY-like exchange interactions, which are strongly enhanced between Fe atoms and diminished between Ni atoms by Cu alloying. An increased Fe magnon scattering rate is expected to occur concurrently with this increased Fe-Fe exchange interaction, supporting the results obtained from the magnon diffusion model.

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  1. Distinct element-specific nanoscale magnetization dynamics following ultrafast laser excitation

    cond-mat.mtrl-sci 2025-06 conditional novelty 6.0 of 10

    Element-resolved ultrafast scattering shows nickel domains distort 10 to 40 times more than cobalt domains after laser excitation, implying a 3D deformation of the magnetic texture.

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