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Sharp Change in the Exchange Bias and the Magnetic Anisotropy Symmetry at a Subthreshold Interlayer Copper Content in NiFe/Cu/IrMn Heterostructures
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Title
Sharp Change in the Exchange Bias and the Magnetic Anisotropy Symmetry at a Subthreshold Interlayer Copper Content in NiFe/Cu/IrMn Heterostructures
Issued Date
2021-05
Citation
Bakhmet'ev, M. V. (2021-05). Sharp Change in the Exchange Bias and the Magnetic Anisotropy Symmetry at a Subthreshold Interlayer Copper Content in NiFe/Cu/IrMn Heterostructures. Journal of Experimental and Theoretical Physics, 132(5), 852–864. doi: 10.1134/S1063776121050010
Type
Article
Keywords
ELECTRICAL-CONDUCTIVITYDC CONDUCTIVITYDEPENDENCELAYERAC
ISSN
1063-7761
Abstract
The NiFe/Cu/IrMn heterostructures with a variable number of interlayer Cu atoms exhibit a sharp change in the exchange-bias field, the coercive force, and the unidirectional anisotropy field at an effective copper layer thickness t(Cu) approximate to 0.5 nm, which corresponds to incomplete coverage of the interface, i.e., to an island deposited structure. The symmetry of the angular dependence of the ferromagnetic resonance changes sharply at an incompletely coated interface (t(Cu) = 0.5 nm), which corresponds to a transition from isolated islands to a magnetic fractal structure. This phenomenon, which can be called a "magnetic" percolation threshold is not related to the electrical resistance of the heterostructure, which decreases sharply at a significantly larger effective threshold copper layer thickness (t(Cu) = 1.3 nm) when the interface is completely covered.
URI
http://hdl.handle.net/20.500.11750/15373
DOI
10.1134/S1063776121050010
Publisher
Maik Nauka/Interperiodica Publishing
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