2017
DOI: 10.1038/s41467-017-01581-6
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Deterministic and robust room-temperature exchange coupling in monodomain multiferroic BiFeO3 heterostructures

Abstract: Exploiting multiferroic BiFeO3 thin films in spintronic devices requires deterministic and robust control of both internal magnetoelectric coupling in BiFeO3, as well as exchange coupling of its antiferromagnetic order to a ferromagnetic overlayer. Previous reports utilized approaches based on multi-step ferroelectric switching with multiple ferroelectric domains. Because domain walls can be responsible for fatigue, contain localized charges intrinsically or via defects, and present problems for device reprodu… Show more

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Cited by 50 publications
(36 citation statements)
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“…The MPB in which rhombohedral and tetragonal phases coexist is thought to be for 0.67BFO-0.33BTO. Another solid solution of BFO formed with BiCoO 3 was also studied systematically [28,29,68,69]. Furthermore, a detailed crystal structure analysis of BiFe 1−x Co x O 3 was performed [68].…”
Section: Crystal Structure Of Bfomentioning
confidence: 99%
“…The MPB in which rhombohedral and tetragonal phases coexist is thought to be for 0.67BFO-0.33BTO. Another solid solution of BFO formed with BiCoO 3 was also studied systematically [28,29,68,69]. Furthermore, a detailed crystal structure analysis of BiFe 1−x Co x O 3 was performed [68].…”
Section: Crystal Structure Of Bfomentioning
confidence: 99%
“…Some multiferroic heterostructures have been produced by compound ferromagnetics (Fe 3 O 4 ) with ferroelectrics BaTiO 3 [59], Pb(Mg 1/3 Nb 2/3 )O 3 -PbTiO 3 (PMN-PT) [60], PdZr x Ti 1-x O 3 (PZT) [61], BiFeO 3 [62], HoMnO 3 , and YMnO 3 [63]. These multiferroic heterostructures show the strong interfacial magnetoelectric effects [64][65][66][67][68][69], which can be used in Electric-field-controlled magnetism and VT in highly correlated Fe 3 O 4 materials have generated great interest recently both scientifically and technologically [51]. Ferroelastic strain control of VT was observed in epitaxial Fe 3 O 4 thin films grown on PMN-PT (011) substrate [4], as shown in four-point geometry (Figure 10(a)).…”
Section: Multiferroic Propertiesmentioning
confidence: 99%
“…[ 53,65 ] , such an asymmetry in the spectrum suggests that the magnetic arrangement is more complex than simple collinear antiferromagnetism. Guided by previous observations for films under similar levels of strain, [ 47,66 ] we have successfully fit the spectrum with a model corresponding to a (slightly) anharmonic cycloid (with anharmonicity along the propagation direction, and parameter of m = 0.5) with a tilting of the cycloid plane (of about 5°) toward the in‐plane direction (full details given in the Supporting Information).…”
Section: Resultsmentioning
confidence: 97%