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dc.contributor.authorFolven, Erik
dc.contributor.authorLinder, Jacob
dc.contributor.authorGomonay, Helen V.
dc.contributor.authorScholl, Andreas
dc.contributor.authorDoran, Andrew
dc.contributor.authorYoung, Anthony
dc.contributor.authorRetterer, Scott
dc.contributor.authorMalik, V.K.
dc.contributor.authorTybell, Per Thomas Martin
dc.contributor.authorTakamura, Yayoi
dc.contributor.authorGrepstad, Jostein
dc.date.accessioned2017-11-09T09:51:29Z
dc.date.available2017-11-09T09:51:29Z
dc.date.created2015-09-15T17:55:14Z
dc.date.issued2015
dc.identifier.issn1098-0121
dc.identifier.urihttp://hdl.handle.net/11250/2465151
dc.description.abstractUsing soft x-ray spectromicroscopy, we investigate the magnetic domain structure in embedded nanomagnets defined in La0.7Sr0.3MnO3 thin films and LaFeO3/La0.7Sr0.3MnO3 bilayers. We find that shape-controlled antiferromagnetic domain states give rise to a significant reduction of the switching field of the rectangular nanomagnets. This is discussed within the framework of competition between an intrinsic spin-flop coupling and shape anisotropy. The data demonstrates that shape effects in antiferromagnets may be used to control the magnetic properties in nanomagnets.nb_NO
dc.language.isoengnb_NO
dc.publisherAmerican Physical Societynb_NO
dc.titleControlling the switching field in nanomagnets by means of domain-engineered antiferromagnetsnb_NO
dc.typeJournal articlenb_NO
dc.description.versionsubmittedVersionnb_NO
dc.source.volume92nb_NO
dc.source.journalPhysical Review B. Condensed Matter and Materials Physicsnb_NO
dc.source.issue9nb_NO
dc.identifier.doi10.1103/PhysRevB.92.094421
dc.identifier.cristin1264466
dc.description.localcode© 2015 American Physical Society. This is the authors' manuscript to the article (preprint).nb_NO
cristin.unitcode194,63,35,0
cristin.unitcode194,66,20,0
cristin.unitnameInstitutt for elektronikk og telekommunikasjon
cristin.unitnameInstitutt for fysikk
cristin.ispublishedtrue
cristin.fulltextpreprint
cristin.qualitycode2


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