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000005501 084__ $$2WoS$$aPhysics, Multidisciplinary
000005501 1001_ $$0P:(DE-HGF)0$$aKrupin, O.$$b0
000005501 245__ $$aRashba effect at the surfaces of rare-earth metals and their monoxides
000005501 260__ $$a[Bad Honnef]$$bDt. Physikalische Ges.$$c2009
000005501 300__ $$a013035
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000005501 440_0 $$08201$$aNew Journal of Physics$$v11$$x1367-2630
000005501 500__ $$aFinancial support through Deutsche Forschungsgemeinschaft, projects STA 413/3-1, BI 823-1/1 and SfB-290) TP6, is gratefully acknowledged. This work was also supported by the US DOE under grant DE-FG02-04ER46158. The Advanced Light Source is operated under US DOE contract DE-AC03-76SF00098 at Lawrence Berkeley National Laboratory. JEP acknowledges financial support by the A-v Humboldt foundation and by the MEC program 'Ramon y Cajal'. We gratefully acknowledge Christian Schubler-Langeheine for designing and setting up the photoemission endstation used during the experiments at BessyII.
000005501 520__ $$aWe present a systematic study of the Rashba-type spin-orbit interaction at the (0001) surfaces of rare-earth metals and their surface monoxides, specifically of Tb metal and the O/Tb, O/Lu and O/Y surfaces. By means of photoemission experiments and ab initio band-structure calculations, we uncover the influence of this interaction on the surface electronic structure. In turn, the dramatic impact of the charge-density distribution of the surface/interface states on the strength of the Rashba-type spin splitting is demonstrated. We discuss the Rashba effect at magnetic and non-magnetic rare-earth surfaces, and compare with cases where it is negligible. The difference between the Rashba effect and magnetic linear dichroism in photoemission is pointed out to help avoid possible confusion in connection with the simultaneous appearance of these two effects at a magnetic surface.
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000005501 7001_ $$0P:(DE-HGF)0$$aPrieto, J. E.$$b3
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000005501 7001_ $$0P:(DE-HGF)0$$aGorovikov, S.$$b5
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000005501 8567_ $$uhttp://dx.doi.org/10.1088/1367-2630/11/1/013035
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