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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Nanoestruturas magn?ticas do tipo n?cleo-casca: um estudo do impacto do campo dipolar / Core-shell magnetic nanostructure: a study of impact of dipolar field

Oliveira, Leonardo Linhares 23 June 2016 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2017-03-09T19:50:48Z No. of bitstreams: 1 LeonardoLinharesOliveira_TESE.pdf: 68488662 bytes, checksum: de2543920cd8d7f953cc8b1b5d1ebf66 (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2017-03-13T19:10:14Z (GMT) No. of bitstreams: 1 LeonardoLinharesOliveira_TESE.pdf: 68488662 bytes, checksum: de2543920cd8d7f953cc8b1b5d1ebf66 (MD5) / Made available in DSpace on 2017-03-13T19:10:14Z (GMT). No. of bitstreams: 1 LeonardoLinharesOliveira_TESE.pdf: 68488662 bytes, checksum: de2543920cd8d7f953cc8b1b5d1ebf66 (MD5) Previous issue date: 2016-06-23 / Nanopart?culas bi-magn?ticas t?m se mostrado promissores em v?rias aplica??es tecnol?gicas, tais como produ??o de ?m?s permanentes, desenvolvimento de geradores de micro-ondas, nano osciladores e sistemas para grava??o magn?tica. Apresentamos um estudo te?rico acerca de nanoestruturas bimagn?ticas do tipo n?cleo@casca constitu?da de materiais ferromagn?ticos de alta e baixa anisotropia. O presente trabalho analisou nanopart?culas com geometria esf?rica e cil?ndrica. Part?culas com formato esf?rico pode ser empregada como pe?a fundamental na constru??o de im?s permanentes de alto desempenho, pois podem apresentar melhorias expressivas no produto energ?tico m?ximo, (BH)max, do sistema. O (BH)max ? um par?metro chave, pois determina se um material ? considerado bom para im? permanente. Nossos resultados mostram que o (BH)max pode ser melhorado significativamente, uma part?cula SmCo5 com 3,5 nm de di?metro recoberta por uma casca de Ferro de 2,5 nm de espessura pode apresentar (BH)max cerca de 4 vezes maior que a part?cula n?o recoberta. No entanto, para um n?cleo de mesmo material, com di?metro muito superior e cascas de Ferro relativamente espessas h? uma redu??o do (BH)max que inviabiliza seu uso para a fabrica??o de ?m?s permanentes. Discutiremos nesse trabalho o comportamento do produto energ?tico destes sistemas. Nanoestruturas com geometria cil?ndrica apresentam diversas aplica??es, como nano osciladores e mem?rias magn?ticas. Dessa forma, conhecer o perfil magn?tico e o comportamento da magnetiza??o no processo de desmagnetiza??o ? de grande relev?ncia. Um cilindro de Permalloy pode com di?metro de 57,0 nm e altura de 21,0 nm apresentar ao longo de sua curva de magnetiza??o o estado v?rtice. A inibi??o deste estado ? relevante para algumas aplica??es e pode ser alcan?ada com a presen?a de um anel externo de um material com momento magn?tico elevado. Do mesmo modo, pode apresentar v?rtice na curva de magnetiza??o devido a presen?a do anel magn?tico. Estudamos ainda os estados magn?ticos presentes em an?is devido a intera??o magn?tica dipolar com o n?cleo. / Bi-magnetic anoparticles has been shown promises in several tachnological applications, such that permanent magnets, microwave generators devices, nanooscilators and magnetic record system for example. We presents a theoretical study about bi-magnetic core@shell nanoparticles consisting of high and low anisotropy ferromagnetic materials. The present work has analyzed nanoparticles with spherical and cylindrical geometries. Spherical particles can be employed as building block for high performance magnets, because can presents a expensive improvement in high energy product, (BH)max, of the system. The (BH)max is a key parameter, because it?s indicate if a material is good to permanent magnets. Our results show that (BH)maxcan be improved significantly, a particle of SmCo5 with 3.5 nm recovered by iron shell with 2.5 nm thickness can presents (BH)max thereabout 4 times great then uncovered particle. In other way, a core of the same material, with major diameter s relative thick shell there is a reduction in (BH)max that unfeasible their use in production of permanent magnets. We discuss in the present work the behavior of energy product these systems. Nanostructures with cylindrical geometries presents several applications, such that nano-oscillators and magnetic memory. In this way, know the magnetic profile and behavior of magnetization in demagnetizing process is relevant. A permalloy cylinder can, with 57.0 nm diameter and 21.0 nm height, presents along your magnetization curve, a vortex state. The inhibition of this state is relevant for some applications and can be reached with a presence of an external ring with elevated magnetic moment material. In the same way, can present vortex in magnetization curve by magnetic ring presence. We study further the magnetic states existing in magnetic ring due to magnetic dipolar interaction with a core.

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