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  4. Influence of the Spatial-Distribution of Trapped Magnetic-Flux on the Effective Pinning Energy of Vortices in Ceramic Y-Ba-Cu-O
 
research article

Influence of the Spatial-Distribution of Trapped Magnetic-Flux on the Effective Pinning Energy of Vortices in Ceramic Y-Ba-Cu-O

Blinov, E. V.
•
Laiho, R.
•
Lahderanta, E.
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1994
Physica C

Relaxation of the isothermoremanent magnetization has been investigated in ceramic Y-Ba-Cu-0 samples with different grain sizes. it is found that the effective pinning energy U(eff) determined at different temperatures by using relaxation data of the remanent magnetic moment M(IR) and the relationship dlnM(IR)/dln t= -kT/U(eff) has a maximum at a value of the magnetizing field H0 corresponding to the most rapid increase of M(IR) with increasing H0. A phenomenological theory based on a critical-state model has been developed to describe these phenomena. The main conclusion of our analysis is that the dependence of U(eff) on H0 can be attributed to the evolution of the distribution of the trapped flux (as H0 is varied) without involving any assumptions about the dependence of the pinning barrier on the field.

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Type
research article
DOI
10.1016/0921-4534(94)90116-3
Web of Science ID

WOS:A1994NB49400011

Author(s)
Blinov, E. V.
Laiho, R.
Lahderanta, E.
Tagantsev, A. K.  
Traito, K. B.
Date Issued

1994

Published in
Physica C
Volume

222

Issue

1-2

Start page

69

End page

77

Subjects

high-tc superconductors

•

high-temperature superconductors

•

ii superconductors

•

creep

•

relaxation

•

crystal

•

glass

•

irreversibility

•

transport

•

currents

Note

Univ Turku,Wihuri Phys Lab,Sf-20500 Turku 50,Finland Af Ioffe Phys Tech Inst,St Petersburg 194021,Russia

Nb494

Cited References Count:33

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LC  
Available on Infoscience
August 21, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/233240
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