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Low-temperature Kerr spectroscopy on half-metallic Sr2FeMoO6

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RÜDIGER, Ulrich, M. RABE, Gernot GÜNTHERODT, H. Q. YIN, Ronald I. DASS, John B. GOODENOUGH, 2000. Low-temperature Kerr spectroscopy on half-metallic Sr2FeMoO6. In: Applied Physics Letters. 77(14), pp. 2216-2218. Available under: doi: 10.1063/1.1313810

@article{Rudiger2000Lowte-9239, title={Low-temperature Kerr spectroscopy on half-metallic Sr2FeMoO6}, year={2000}, doi={10.1063/1.1313810}, number={14}, volume={77}, journal={Applied Physics Letters}, pages={2216--2218}, author={Rüdiger, Ulrich and Rabe, M. and Güntherodt, Gernot and Yin, H. Q. and Dass, Ronald I. and Goodenough, John B.} }

<rdf:RDF xmlns:dcterms="" xmlns:dc="" xmlns:rdf="" xmlns:bibo="" xmlns:dspace="" xmlns:foaf="" xmlns:void="" xmlns:xsd="" > <rdf:Description rdf:about=""> <dc:creator>Güntherodt, Gernot</dc:creator> <dc:contributor>Yin, H. Q.</dc:contributor> <foaf:homepage rdf:resource="http://localhost:8080/jspui"/> <dcterms:abstract xml:lang="eng">The polar Kerr rotation and ellipticity spectra of epitaxially grown (001)-oriented half-metallic Sr2FeMoO6 thin films have been determined in the photon energy range from 1.2 to 4.9 eV. The Kerr rotation spectrum shows three maxima at E = 1.6, 4.0, and 4.65 eV. The maxima at 4.0 and 4.65 eV are consistent with spin-polarized band structure calculations for interband transitions from the O-2p to the minority-spin pi*Mo/Fe and majority-spin Mo-t2g bands, respectively. The overall maximum intrinsic Kerr rotation is ThetaK = 0.045° at a photon energy of 4.65 eV. The maximum of ThetaK at E = 1.6 eV coincides with a minimum in the reflectivity due to the plasma edge of Sr2FeMoO6 and, therefore, is not related to an interband transition.</dcterms:abstract> <dcterms:hasPart rdf:resource=""/> <dspace:isPartOfCollection rdf:resource=""/> <dc:creator>Rüdiger, Ulrich</dc:creator> <dcterms:title>Low-temperature Kerr spectroscopy on half-metallic Sr2FeMoO6</dcterms:title> <dc:contributor>Rabe, M.</dc:contributor> <dc:contributor>Rüdiger, Ulrich</dc:contributor> <dc:contributor>Dass, Ronald I.</dc:contributor> <bibo:uri rdf:resource=""/> <dc:creator>Rabe, M.</dc:creator> <dc:contributor>Güntherodt, Gernot</dc:contributor> <dc:creator>Dass, Ronald I.</dc:creator> <dc:language>eng</dc:language> <dc:creator>Goodenough, John B.</dc:creator> <dc:format>application/pdf</dc:format> <dc:creator>Yin, H. Q.</dc:creator> <dcterms:rights rdf:resource=""/> <dc:rights>Attribution-NonCommercial-NoDerivs 2.0 Generic</dc:rights> <dcterms:isPartOf rdf:resource=""/> <dcterms:issued>2000</dcterms:issued> <dcterms:available rdf:datatype="">2011-03-24T17:54:48Z</dcterms:available> <dc:date rdf:datatype="">2011-03-24T17:54:48Z</dc:date> <dcterms:bibliographicCitation>First publ. in: Applied Physics Letters 77 (2000), 14, pp. 2216-2218</dcterms:bibliographicCitation> <void:sparqlEndpoint rdf:resource="http://localhost/fuseki/dspace/sparql"/> <dc:contributor>Goodenough, John B.</dc:contributor> <dspace:hasBitstream rdf:resource=""/> </rdf:Description> </rdf:RDF>

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