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Title

AMPHIBIAN CSIC experimentaldata N RuizGomez 2018 XPEEM 20180312 75144 (v1)

AuthorsRuiz-Gómez, S.; Pérez, Lucas; Mascaraque, Arantzazu ; Quesada, Adrián ; Prieto, Pilar ; Palacio, Irene; Martín-García, L.; Foerster, M.; Abelle, Lucía; de la Figuera, Juan
KeywordsNanomagnetism
Magnetic domains
Magnetite
Nanostructure
Issue Date29-Aug-2018
PublisherDIGITAL.CSIC
CitationRuiz-Gómez, S.; Pérez, Lucas; Mascaraque, Arantzazu ; Quesada, Adrián; Prieto, Pilar ; Palacio, Irene; Martín-García, L.; Foerster, M.; Abelle, Lucía; de la Figuera, Juan ; 2018; "AMPHIBIAN CSIC experimentaldata N RuizGomez 2018 XPEEM 20180312 75144 (v1) [Dataset]"; DIGITAL.CSIC; http://dx.doi.org/10.20350/digitalCSIC/8562
AbstractWe have grown high quality magnetite microcrystals free from antiphase boundaries on Ru(0001) by reactive molecular beam epitaxy, conserving bulk magnetic properties below 20 nm thickness. Magnetization vector maps are obtained by X-ray spectromicroscopy and compared with micromagnetic simulations. The observed domain configurations are dictated purely by shape anisotropy, overcoming the possible influences of (magneto)crystalline anisotropy and defects, thus demonstrating the possibility of designing spin structures in ultrathin, magnetically soft magnetite at will.
DescriptionLos datos se componen de grupos de 3 imágenes de microscopía XPEEM correspondientes a 5 islas nanométricas de magnetita. Cada isla está identificada en el nombre de los datos como i1, i2….i5, y las tres imágenes de cada isla con el identificador R0, R60 y R120.
URIhttp://hdl.handle.net/10261/169216
DOIhttp://dx.doi.org/10.20350/digitalCSIC/8562
ReferencesRuiz-Gómez, S.; Pérez, Lucas; Mascaraque, Arantzazu ; Quesada, Adrián; Prieto, Pilar ; Palacio, Irene; Martín-García, L.; Foerster, M.; Abelle, Lucía; de la Figuera, Juan. Geometrically defined spin structures in ultrathin Fe3O4 with bulk like magnetic properties. https://doi.org/10.1039/C7NR07143D . http://hdl.handle.net/10261/161989
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File Description SizeFormat 
AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i1_R0.tifi1 - R0314,63 kBTIFFView/Open
AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i1_R60.tifi1 - R60314,43 kBTIFFView/Open
AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i1_R120.tifi1 - R120314,43 kBTIFFView/Open
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AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i2_R120.tifi2 - R120295,89 kBTIFFView/Open
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AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i3_R120.tifi3 - R120354,86 kBTIFFView/Open
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AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i4_R60.tifi4 - R60161,22 kBTIFFView/Open
AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i4_R120.tifi4 - R120161,02 kBTIFFView/Open
AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i5_R0.tifi5 - R01,52 MBTIFFView/Open
AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i5_R60.tifi5 - R601,52 MBTIFFView/Open
AMPHIBIAN_CSIC_experimentaldata_XPEEM_20180312_75144_v1_i5_R120.tifi5 - R1201,52 MBTIFFView/Open
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