Publikation: Spin-dependent hybridization and magnetic order of Ce/Fe(110) studied by spin-resolved resonant photoemission
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2007
Autor:innen
Kucherenko, Yuriy
Molodtsov, Serguei L.
Laubschat, Clemens
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Published
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Surface Science. 2007, 601, pp. 4329-4333. Available under: doi: 10.1016/j.susc.2007.04.230
Zusammenfassung
Electronic and magnetic structures of the Ce/Fe(110) system were studied by means of spin- and angle-resolved resonant photoemission. Antiferromagnetic coupling of Fe 3d and Ce 4f spin magnetic moments was concluded from spin-resolved photoemission measurements supported by the electronic structure calculations. The relative intensity of the minority-spin component of hybridization feature at the Fermi level is larger than the majority-spin one, that can be assigned to spin-dependent hybridization between 4f and valence-band electrons induced by Fe substrate.
Zusammenfassung in einer weiteren Sprache
Fachgebiet (DDC)
530 Physik
Schlagwörter
Spin-resolved photoemission, LEED, Cerium, Hybridization
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DEDKOV, Yuriy S., Mikhail FONIN, Yuriy KUCHERENKO, Serguei L. MOLODTSOV, Ulrich RÜDIGER, Clemens LAUBSCHAT, 2007. Spin-dependent hybridization and magnetic order of Ce/Fe(110) studied by spin-resolved resonant photoemission. In: Surface Science. 2007, 601, pp. 4329-4333. Available under: doi: 10.1016/j.susc.2007.04.230BibTex
@article{Dedkov2007Spind-9364,
year={2007},
doi={10.1016/j.susc.2007.04.230},
title={Spin-dependent hybridization and magnetic order of Ce/Fe(110) studied by spin-resolved resonant photoemission},
volume={601},
journal={Surface Science},
pages={4329--4333},
author={Dedkov, Yuriy S. and Fonin, Mikhail and Kucherenko, Yuriy and Molodtsov, Serguei L. and Rüdiger, Ulrich and Laubschat, Clemens}
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<dcterms:abstract xml:lang="eng">Electronic and magnetic structures of the Ce/Fe(110) system were studied by means of spin- and angle-resolved resonant photoemission. Antiferromagnetic coupling of Fe 3d and Ce 4f spin magnetic moments was concluded from spin-resolved photoemission measurements supported by the electronic structure calculations. The relative intensity of the minority-spin component of hybridization feature at the Fermi level is larger than the majority-spin one, that can be assigned to spin-dependent hybridization between 4f and valence-band electrons induced by Fe substrate.</dcterms:abstract>
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