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Shape-dependent magnetization reversal processes and flux-closure configurations of microstructured epitaxial Fe(110) elements

Shape-dependent magnetization reversal processes and flux-closure configurations of microstructured epitaxial Fe(110) elements

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KÖNIG, Christian, Martin SPERLICH, Roland HEINESCH, Raffaella CALARCO, Jan O. HAUCH, Ulrich RÜDIGER, Gernot GÜNTHERODT, Siegfrid KIRSCH, Barbaros ÖZYILMAZ, Andrew D. KENT, 2001. Shape-dependent magnetization reversal processes and flux-closure configurations of microstructured epitaxial Fe(110) elements. In: Applied Physics Letters. 79(22), pp. 3648-3650

@article{Konig2001Shape-5090, title={Shape-dependent magnetization reversal processes and flux-closure configurations of microstructured epitaxial Fe(110) elements}, year={2001}, doi={10.1063/1.1418033}, number={22}, volume={79}, journal={Applied Physics Letters}, pages={3648--3650}, author={König, Christian and Sperlich, Martin and Heinesch, Roland and Calarco, Raffaella and Hauch, Jan O. and Rüdiger, Ulrich and Güntherodt, Gernot and Kirsch, Siegfrid and Özyilmaz, Barbaros and Kent, Andrew D.} }

<rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:bibo="http://purl.org/ontology/bibo/" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dcterms="http://purl.org/dc/terms/" xmlns:xsd="http://www.w3.org/2001/XMLSchema#" > <rdf:Description rdf:about="https://kops.uni-konstanz.de/rdf/resource/123456789/5090"> <dcterms:abstract xml:lang="eng">The magnetization reversal processes and magnetic domain states of microstructured epitaxial Fe(110) elements have been investigated by magnetic-force microscopy and longitudinal Kerr hysteresis loop measurements. The characteristic micromagnetic behavior, such as coercive and nucleation fields, can be tailored by taking advantage of the pronounced uniaxial anisotropy and by varying the shape of the elements. The magnetic domain states of rectangular and diamond-shaped elements with lateral dimensions of 1.5 µm × 0.5 µm have been investigated after magnetic saturation along the long and short axes of the elements. The observed flux-closure domain states have been compared with micromagnetic simulations.</dcterms:abstract> <dc:creator>König, Christian</dc:creator> <dc:contributor>Hauch, Jan O.</dc:contributor> <dc:rights>deposit-license</dc:rights> <dc:contributor>Rüdiger, Ulrich</dc:contributor> <dc:creator>Hauch, Jan O.</dc:creator> <dc:contributor>Heinesch, Roland</dc:contributor> <bibo:uri rdf:resource="http://kops.uni-konstanz.de/handle/123456789/5090"/> <dc:creator>Kent, Andrew D.</dc:creator> <dc:creator>Rüdiger, Ulrich</dc:creator> <dcterms:bibliographicCitation>First publ. in: Applied Physics Letters 79 (2001), 22, pp. 3648-3650</dcterms:bibliographicCitation> <dcterms:title>Shape-dependent magnetization reversal processes and flux-closure configurations of microstructured epitaxial Fe(110) elements</dcterms:title> <dc:contributor>Calarco, Raffaella</dc:contributor> <dc:format>application/pdf</dc:format> <dcterms:available rdf:datatype="http://www.w3.org/2001/XMLSchema#dateTime">2011-03-24T14:53:04Z</dcterms:available> <dc:creator>Calarco, Raffaella</dc:creator> <dc:contributor>Özyilmaz, Barbaros</dc:contributor> <dc:creator>Güntherodt, Gernot</dc:creator> <dc:contributor>König, Christian</dc:contributor> <dc:contributor>Kent, Andrew D.</dc:contributor> <dc:contributor>Sperlich, Martin</dc:contributor> <dc:creator>Özyilmaz, Barbaros</dc:creator> <dc:contributor>Güntherodt, Gernot</dc:contributor> <dcterms:issued>2001</dcterms:issued> <dc:date rdf:datatype="http://www.w3.org/2001/XMLSchema#dateTime">2011-03-24T14:53:04Z</dc:date> <dcterms:rights rdf:resource="https://creativecommons.org/licenses/by-nc-nd/2.0/legalcode"/> <dc:language>eng</dc:language> <dc:creator>Kirsch, Siegfrid</dc:creator> <dc:contributor>Kirsch, Siegfrid</dc:contributor> <dc:creator>Heinesch, Roland</dc:creator> <dc:creator>Sperlich, Martin</dc:creator> </rdf:Description> </rdf:RDF>

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