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- W3100437364 abstract "Femtosecond laser pulses are now a powerful tool for controlling spin waves, which is promising for magnonic data processing. Unveiling the full potential of ultrafast photomagnonics requires extending the range of technologically relevant mechanisms and materials. Thus the authors investigate propagating magnons in a thin film of the ferromagnetic alloy galfenol, which supports spin-wave excitation via ultrafast laser-induced changes in its pronounced in-plane magnetic anisotropy. Magnetostatic surface waves are clearly detectable over 10 $ensuremath{mu}$m from the excitation spot, while abrupt localized changes in anisotropy provide a path to ultrafast optically reconfigurable magnonic elements." @default.
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- W3100437364 date "2019-10-18" @default.
- W3100437364 modified "2023-10-16" @default.
- W3100437364 title "Optical Excitation of Propagating Magnetostatic Waves in an Epitaxial Galfenol Film by Ultrafast Magnetic Anisotropy Change" @default.
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- W3100437364 doi "https://doi.org/10.1103/physrevapplied.12.044044" @default.
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