Transport Barkhausen-like noise in uniaxially pressed Bi(1.65)Pb(0.35)Sr(2)Ca(2)Cu(3)O(10+delta) ceramic samples
Contribuinte(s) |
UNIVERSIDADE DE SÃO PAULO |
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Data(s) |
18/10/2012
18/10/2012
2010
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Resumo |
We report on the detection of the transport Barkhausen-like noise (TBN) in polycrystalline samples of Bi(1.65)Pb(0.35)Sr(2)Ca(2) Cu(3)O(10+delta) (Bi-2223) which were subjected to different uniaxial compacting pressures. The transport Barkhausen-like noise was measured when the sample was subjected to an ac triangular-shape magnetic field (f similar to 1 Hz) with maximum amplitude B(max) approximate to 5.5 mT, in order to avoid the flux penetration within the superconducting grains. Analysis of the TBN signal, measured for several values of excitation current density, indicated that the applied magnetic field in which the noise signal first appears, B(a)(t(i)), is closely related to the magnetic-flux pinning capability of the material. The combined results are consistent with the existence of three different superconducting levels within the samples: (i) the superconducting grains; (ii) the superconducting clusters; and (iii) the weak-links. We finally argue that TBN measurements constitute a powerful tool for probing features of the intergranular transport properties in polycrystalline samples of high-T(c) superconductors. (C) 2010 Elsevier B.V. All rights reserved. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP)[2009/51562-3] Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq)[473932/2007-5] [084-15/06] [308706/2007-2] |
Identificador |
PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, v.470, n.15-16, p.611-616, 2010 0921-4534 http://producao.usp.br/handle/BDPI/18791 10.1016/j.physc.2010.05.242 |
Idioma(s) |
eng |
Publicador |
ELSEVIER SCIENCE BV |
Relação |
Physica C-superconductivity and Its Applications |
Direitos |
restrictedAccess Copyright ELSEVIER SCIENCE BV |
Palavras-Chave | #Intergranular properties #High-T(c) superconductors #Barkhausen-like noise #GRANULAR SUPERCONDUCTORS #VORTEX AVALANCHES #MAGNETIC-FIELD #FLUX #STATE #PHASE #MODEL #(BI #Physics, Applied |
Tipo |
article original article publishedVersion |