4.6 Article

Dynamics of excited electrons in copper and ferromagnetic transition metals: Theory and experiment

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PHYSICAL REVIEW B
卷 61, 期 14, 页码 9427-9440

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.61.9427

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Both theoretical and experimental results for the dynamics of photoexcited electrons at surfaces of Cu and the ferromagnetic transition metals Fe, Co, and Ni are presented. A model for the dynamics of excited electrons is developed, which is based on the Boltzmann equation and includes effects of photoexcitation, electron-electron scattering, secondary electrons (cascade and Auger electrons), and transport of excited carriers out of the detection region. From this we determine the time-resolved two-photon photoemission (TR-2PPE). Thus a direct comparison of calculated relaxation times with experimental results by means of TR-2PPE becomes possible. The comparison indicates that the magnitudes of the spin-averaged relaxation time tau and of the ratio tau(up arrow) / tau(down arrow) Of majority and minority relaxation times for the different ferromagnetic transition metals result not only from density-of-states effects, but also from different Coulomb matrix elements M. Taking M-Fe>M-Cu>M-Ni =M-Co we get reasonable agreement with experiments.

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