Impedance and initial magnetic permeability of gadolinium

Detalhes bibliográficos
Autor(a) principal: Fraga, Gilberto Luiz Ferreira
Data de Publicação: 2010
Outros Autores: Pureur Neto, Paulo, Cardoso, Lisandro Pavie
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFRGS
Texto Completo: http://hdl.handle.net/10183/96134
Resumo: In the present work we report on measurements of the complex impedance and the magnetoimpedance of a textured sample of gadolinium metal. The preferential c -axis orientation of the Gd hexagonal structure is perpendicular to the long axis of the sample. From the experimental data, the complex initial magnetic permeability μ=μ'+μ", was obtained as a function of temperature and frequency of the ac exciting current.We have found that the results for μ (T) below the spin reorientation temperature may be described as a power law of the reduced temperature t=1−T/TSR, where TSR is the spin reorientation temperature. This behavior suggests that a genuine phase transition occurs at TSR. Although the impedance displays a weak anomaly at the Curie temperature, TC, magnetic measurements indicate that the ferromagnetic response of Gd extends up to this critical point. Thus, two different phases characterizes the cooperative magnetic state of this metal. The frequency dependent results for μ' and μ" were fitted to a modified Debye formula and the obtained parameters allow us to discriminate between the contributions from domain-wall motion and from magnetization rotation. We obtain that the dynamical properties of the domain walls in Gd are governed by a broad distribution of frequencies whose average value diverge at TSR. The isothermal magnetoimpedance measurements in temperatures smaller than TSR show an interesting plateau at low dc applied fields. This plateau is limited by a characteristic field HK whose magnitude decreases rapidly to nearly zero at TSR, giving further support for the phase transition scenario at this temperature.
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spelling Fraga, Gilberto Luiz FerreiraPureur Neto, PauloCardoso, Lisandro Pavie2014-06-06T02:06:39Z20100021-8979http://hdl.handle.net/10183/96134000733617In the present work we report on measurements of the complex impedance and the magnetoimpedance of a textured sample of gadolinium metal. The preferential c -axis orientation of the Gd hexagonal structure is perpendicular to the long axis of the sample. From the experimental data, the complex initial magnetic permeability μ=μ'+μ", was obtained as a function of temperature and frequency of the ac exciting current.We have found that the results for μ (T) below the spin reorientation temperature may be described as a power law of the reduced temperature t=1−T/TSR, where TSR is the spin reorientation temperature. This behavior suggests that a genuine phase transition occurs at TSR. Although the impedance displays a weak anomaly at the Curie temperature, TC, magnetic measurements indicate that the ferromagnetic response of Gd extends up to this critical point. Thus, two different phases characterizes the cooperative magnetic state of this metal. The frequency dependent results for μ' and μ" were fitted to a modified Debye formula and the obtained parameters allow us to discriminate between the contributions from domain-wall motion and from magnetization rotation. We obtain that the dynamical properties of the domain walls in Gd are governed by a broad distribution of frequencies whose average value diverge at TSR. The isothermal magnetoimpedance measurements in temperatures smaller than TSR show an interesting plateau at low dc applied fields. This plateau is limited by a characteristic field HK whose magnitude decreases rapidly to nearly zero at TSR, giving further support for the phase transition scenario at this temperature.application/pdfengJournal of applied physics. Melville. Vol. 107, no. 5 (Mar. 2010), 053909, 9 p.Física da matéria condensadaMagnetismoMagnetoimpedanciaPermeabilidade magnéticaMateriais magnéticosGadolínioImpedance and initial magnetic permeability of gadoliniumEstrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSORIGINAL000733617.pdf000733617.pdfTexto completo (inglês)application/pdf1318833http://www.lume.ufrgs.br/bitstream/10183/96134/1/000733617.pdf5dac6c17e67726847ef4477280753192MD51TEXT000733617.pdf.txt000733617.pdf.txtExtracted Texttext/plain45760http://www.lume.ufrgs.br/bitstream/10183/96134/2/000733617.pdf.txtea7719d52c708cb18dd68be0ed445a18MD5210183/961342023-08-04 03:32:41.532583oai:www.lume.ufrgs.br:10183/96134Repositório de PublicaçõesPUBhttps://lume.ufrgs.br/oai/requestopendoar:2023-08-04T06:32:41Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false
dc.title.pt_BR.fl_str_mv Impedance and initial magnetic permeability of gadolinium
title Impedance and initial magnetic permeability of gadolinium
spellingShingle Impedance and initial magnetic permeability of gadolinium
Fraga, Gilberto Luiz Ferreira
Física da matéria condensada
Magnetismo
Magnetoimpedancia
Permeabilidade magnética
Materiais magnéticos
Gadolínio
title_short Impedance and initial magnetic permeability of gadolinium
title_full Impedance and initial magnetic permeability of gadolinium
title_fullStr Impedance and initial magnetic permeability of gadolinium
title_full_unstemmed Impedance and initial magnetic permeability of gadolinium
title_sort Impedance and initial magnetic permeability of gadolinium
author Fraga, Gilberto Luiz Ferreira
author_facet Fraga, Gilberto Luiz Ferreira
Pureur Neto, Paulo
Cardoso, Lisandro Pavie
author_role author
author2 Pureur Neto, Paulo
Cardoso, Lisandro Pavie
author2_role author
author
dc.contributor.author.fl_str_mv Fraga, Gilberto Luiz Ferreira
Pureur Neto, Paulo
Cardoso, Lisandro Pavie
dc.subject.por.fl_str_mv Física da matéria condensada
Magnetismo
Magnetoimpedancia
Permeabilidade magnética
Materiais magnéticos
Gadolínio
topic Física da matéria condensada
Magnetismo
Magnetoimpedancia
Permeabilidade magnética
Materiais magnéticos
Gadolínio
description In the present work we report on measurements of the complex impedance and the magnetoimpedance of a textured sample of gadolinium metal. The preferential c -axis orientation of the Gd hexagonal structure is perpendicular to the long axis of the sample. From the experimental data, the complex initial magnetic permeability μ=μ'+μ", was obtained as a function of temperature and frequency of the ac exciting current.We have found that the results for μ (T) below the spin reorientation temperature may be described as a power law of the reduced temperature t=1−T/TSR, where TSR is the spin reorientation temperature. This behavior suggests that a genuine phase transition occurs at TSR. Although the impedance displays a weak anomaly at the Curie temperature, TC, magnetic measurements indicate that the ferromagnetic response of Gd extends up to this critical point. Thus, two different phases characterizes the cooperative magnetic state of this metal. The frequency dependent results for μ' and μ" were fitted to a modified Debye formula and the obtained parameters allow us to discriminate between the contributions from domain-wall motion and from magnetization rotation. We obtain that the dynamical properties of the domain walls in Gd are governed by a broad distribution of frequencies whose average value diverge at TSR. The isothermal magnetoimpedance measurements in temperatures smaller than TSR show an interesting plateau at low dc applied fields. This plateau is limited by a characteristic field HK whose magnitude decreases rapidly to nearly zero at TSR, giving further support for the phase transition scenario at this temperature.
publishDate 2010
dc.date.issued.fl_str_mv 2010
dc.date.accessioned.fl_str_mv 2014-06-06T02:06:39Z
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dc.identifier.issn.pt_BR.fl_str_mv 0021-8979
dc.identifier.nrb.pt_BR.fl_str_mv 000733617
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url http://hdl.handle.net/10183/96134
dc.language.iso.fl_str_mv eng
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dc.relation.ispartof.pt_BR.fl_str_mv Journal of applied physics. Melville. Vol. 107, no. 5 (Mar. 2010), 053909, 9 p.
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