Magnetization dynamics in nanostructures with weak/strong anisotropy

dc.contributor.authorAndrade, Antonio Marcos Helgueira de
dc.contributor.authorCorrêa, Marcio Assolin
dc.contributor.authorViegas, Alexandre Da Cas
dc.contributor.authorBohn, Felipe
dc.contributor.authorSommer, Rubem Luis
dc.date.accessioned2021-11-25T15:52:57Z
dc.date.available2021-11-25T15:52:57Z
dc.date.issued2014-03-13
dc.description.abstractWe investigate the high-frequency response of magnetization dynamics through magnetoimpedance (MI) effect in Permalloy-based multilayered thin films produced with two different non-magnetic metallic spacers: Cu and Ag. Due to the nature of the spacer materials, we are able to play with magnetic properties and to study both systems with weak/strong magnetic anisotropy. We verify very rich features in the magnetoimpedance behavior and high magnetoimpedance ratios, with values above 200%. We compare the MI results obtained in multilayered thin films with distinct spacers and number of bilayers, and discuss them in terms of the different mechanisms that govern the MI changes observed at distinct frequency ranges, intensity of the magnetic anisotropy, alignment between dc magnetic field and anisotropy direction. Besides, by considering a theoretical approach that takes into account two single models together and calculate the transverse magnetic permeability and the MI effect, we support our interpretation via numerical calculations modeling the effect of weak/strong magnetic anisotropy on the MI response. Thus, we confirm that these features are very important for the use of multilayered films in sensor applications and, both the frequency and field response can be tailored to fulfill the requirements of a given devicept_BR
dc.description.resumoWe investigate the high-frequency response of magnetization dynamics through magnetoimpedance (MI) effect in Permalloy-based multilayered thin films produced with two different non-magnetic metallic spacers: Cu and Ag. Due to the nature of the spacer materials, we are able to play with magnetic properties and to study both systems with weak/strong magnetic anisotropy. We verify very rich features in the magnetoimpedance behavior and high magnetoimpedance ratios, with values above 200%. We compare the MI results obtained in multilayered thin films with distinct spacers and number of bilayers, and discuss them in terms of the different mechanisms that govern the MI changes observed at distinct frequency ranges, intensity of the magnetic anisotropy, alignment between dc magnetic field and anisotropy direction. Besides, by considering a theoretical approach that takes into account two single models together and calculate the transverse magnetic permeability and the MI effect, we support our interpretation via numerical calculations modeling the effect of weak/strong magnetic anisotropy on the MI response. Thus, we confirm that these features are very important for the use of multilayered films in sensor applications and, both the frequency and field response can be tailored to fulfill the requirements of a given devicept_BR
dc.identifier.citationANDRADE, Antonio Marcos Helgueira de; CORRÊA, Marcio Assolin; VIEGAS, Alexandre Da Cas; BOHN, Felipe; SOMMER, Rubem Luis. Magnetization dynamics in nanostructures with weak/strong anisotropy. Journal Of Applied Physics, [s.l.], v. 115, n. 10, p. 103908/1 - 103908/10, 14 mar. 2014. AIP Publishing. Disponível em: https://aip.scitation.org/doi/10.1063/1.4868157. Acesso em 24 mai. 2020. DOI: http://dx.doi.org/10.1063/1.4868157.pt_BR
dc.identifier.issn0021-8979
dc.identifier.issn1089-7550
dc.identifier.urihttps://repositorio.ufrn.br/handle/123456789/45026
dc.languageenpt_BR
dc.publisherAIP Publishing LLCpt_BR
dc.subjectAlta frequência da dinâmica de magnetizaçãopt_BR
dc.subjectMagnetoimpedânciapt_BR
dc.subjectPermalloy filmes finospt_BR
dc.subjectHigh-frequency response of magnetization dynamicspt_BR
dc.subjectMagnetoimpedancept_BR
dc.subjectPermalloy-based multilayered thin filmspt_BR
dc.titleMagnetization dynamics in nanostructures with weak/strong anisotropypt_BR
dc.typearticlept_BR

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