We measured the magnetic linear dichroism in the angular distribution (MLDAD) of photoemission of thin Gd layers on Fe(100). At low photon energies large MLDAD asymmetries, up to 40%, in the (Formula presented) photoemission were observed. The line shape and the photon-energy dependence of the measured MLDAD are in good agreement with theoretical results. Analysis of the (Formula presented) and (Formula presented) magnetic signals indicates an antiferromagnetic coupling between Gd and Fe, confirming previous findings. We also demonstrate that the MLDAD plus-minus feature is governed by the orbital magnetic moment of the core hole state.

Local magnetic moment coupling of Gd on Fe(100) studied by magnetic dichroism in angular-dependent photoemission / G. Panaccione, P. Torelli, G. Rossi. - In: PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS. - ISSN 1098-0121. - 58:10(1998), pp. R5916-R5919.

Local magnetic moment coupling of Gd on Fe(100) studied by magnetic dichroism in angular-dependent photoemission

G. Rossi
1998

Abstract

We measured the magnetic linear dichroism in the angular distribution (MLDAD) of photoemission of thin Gd layers on Fe(100). At low photon energies large MLDAD asymmetries, up to 40%, in the (Formula presented) photoemission were observed. The line shape and the photon-energy dependence of the measured MLDAD are in good agreement with theoretical results. Analysis of the (Formula presented) and (Formula presented) magnetic signals indicates an antiferromagnetic coupling between Gd and Fe, confirming previous findings. We also demonstrate that the MLDAD plus-minus feature is governed by the orbital magnetic moment of the core hole state.
Core-level photoemission; spin polarization; linear dichroism; valence states; resolved photoemission; systems; FE; distribuitions; surface
Settore FIS/03 - Fisica della Materia
1998
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/555284
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