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Electron-correlation effects in appearance-potential spectra of Ni

arXiv:cond-mat/0102331 · doi:10.1103/PhysRevB.63.165118

Abstract

Spin-resolved and temperature-dependent appearance-potential spectra of ferromagnetic Nickel are measured and analyzed theoretically. The Lander self-convolution model which relates the line shape to the unoccupied part of the local density of states turns out to be insufficient. Electron correlations and orbitally resolved transition-matrix elements are shown to be essential for a quantitative agreement between experiment and theory.

LaTeX, 6 pages, 2 eps figures included, Phys. Rev. B (in press)