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Photon energy dependence of the spin polarization of the spectral features at the binding energy of 6.4 and 3.8 eV, which corresponds to 1 G and 3 F terms in the final state, respectively. The thin lines connecting experimental results are drawn to separate the photon energy dependences of 1 G and 3 F terms for the sake of clarity and are not intended to show peak and dip structures explicitly.

Photon energy dependence of the spin polarization of the spectral features at the binding energy of 6.4 and 3.8 eV, which corresponds to 1 G and 3 F terms in the final state, respectively. The thin lines connecting experimental results are drawn to separate the photon energy dependences of 1 G and 3 F terms for the sake of clarity and are not intended to show peak and dip structures explicitly.

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Spin-resolved photoemission spectra of 6-, 9-, and 13-eV satellites of the ferromagnetic Ni valence band are reported. The spin polarization of the valence-band satellites and their photon energy dependence are interpreted by the multiplet configuration of 3d 8 and 3d 7 final states. This implies the localization of a photoexcited final state refle...

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... Fig. 3, we show the photon energy dependence of the spin polarization of a different part of the 6-eV satellite. Although each term of the 3d 8 final state may consist of many multiplets due to the multipole 3d-3d and 3d-3p interactions, we represent the 1 G and 3 F terms as the spectral features at the binding energies of 6.4 and 3.8 eV, ...