Spin selectivity in angle-resolved Auger photoelectron coincidence spectroscopy (AR-APECS) is used to probe electron correlation in ferromagnetic thin films. In particular, exploiting the AR-APECS capability to discriminate Auger electron emission events characterized by valence hole pairs created either in the high or in the low total spin state, a strong correlation effect in the Fe M2,3VV Auger line shape (measured in coincidence with the Fe 3p photoelectrons) of Fe/Cu(001) thin films is detected and ascribed to interactions within the majority spin subband. Such an assignment follows from a close comparison of the experimental AR-APECS line shapes with the predictions of a model based on spin polarized density functional theory and the Cini-Sawatzky approach.

R., G., G., F., R. A., B., F., D.P., F., O., A., R., et al. (2012). New Search Spin-Dependent On-Site Electron Correlations and Localization in Itinerant Ferromagnets. PHYSICAL REVIEW LETTERS, 109.

New Search Spin-Dependent On-Site Electron Correlations and Localization in Itinerant Ferromagnets

STEFANI, Giovanni
2012-01-01

Abstract

Spin selectivity in angle-resolved Auger photoelectron coincidence spectroscopy (AR-APECS) is used to probe electron correlation in ferromagnetic thin films. In particular, exploiting the AR-APECS capability to discriminate Auger electron emission events characterized by valence hole pairs created either in the high or in the low total spin state, a strong correlation effect in the Fe M2,3VV Auger line shape (measured in coincidence with the Fe 3p photoelectrons) of Fe/Cu(001) thin films is detected and ascribed to interactions within the majority spin subband. Such an assignment follows from a close comparison of the experimental AR-APECS line shapes with the predictions of a model based on spin polarized density functional theory and the Cini-Sawatzky approach.
2012
R., G., G., F., R. A., B., F., D.P., F., O., A., R., et al. (2012). New Search Spin-Dependent On-Site Electron Correlations and Localization in Itinerant Ferromagnets. PHYSICAL REVIEW LETTERS, 109.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/118415
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