Transient electronic and magnetic structures of nickel heated by ultrafast laser pulses

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Abstract

We investigate the evolution of the Ni electronic and magnetic structure on fs to ps time scales following fs-laser excitation. Within 200 fs after excitation the Ni3d ferromagnetic moment is reduced as probed by x-ray magnetic circular dichroism. At the same time the Ni3d electronic structure undergoes pronounced changes as demonstrated by x-ray absorption spectroscopy. We show that the latter persists also into thermal equilibrium which is reached on the ps time scale. Cluster calculations identify a reduction in 3d-4sp hybridization possibly associated with phonon-driven spin-flip excitations. © 2009 The American Physical Society.

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Kachel, T., Pontius, N., Stamm, C., Wietstruk, M., Aziz, E. F., Dürr, H. A., … De Groot, F. M. F. (2009). Transient electronic and magnetic structures of nickel heated by ultrafast laser pulses. Physical Review B - Condensed Matter and Materials Physics, 80(9). https://doi.org/10.1103/PhysRevB.80.092404

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