Solid State Communications, ( ISI ), Volume (275), No (3), Year (2018-3) , Pages (48-52)

Title : ( Effect of magnetic field on the flux pinning mechanisms in Al and SiC co-doped MgB2 superconductor )

Authors: Narjess Sadat Kia Firoozkoohi , Shaban Reza Ghorbani , Hadi Arabi , M.S.A. Hossain ,

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Abstract

MgB2 superconductor samples co-doped with 0.02 wt. Al2O3 and 0-0.05 wt. SiC were studied by magnetization – magnetic field (M-H) loop measurements at different temperatures. The critical current density has been calculated by the Bean model, and the irreversibility field, Hirr, has been obtained by the Kramer method. The pinning mechanism of the co-doped sample with 2% Al and 5% SiC was investigated in particular due to its having the highest Hirr. The normalized volume pinning force f = F/Fmax as a function of reduced magnetic field h = H/Hirr has been obtained, and the pinning mechanism was studied by the Dew-Houghes model. It was found that the normal point pinning (NPP), the normal surface pinning (NSP), and the normal volume pinning (NVP) mechanisms play the main roles. The magnetic field and temperature dependence of contributions of the NPP, NSP, and NVP pinning mechanisms were obtained. The results show that the contributions of the pinning mechanisms depend on the temperature and magnetic field. From the temperature dependence of the critical current density within the collective pinning theory, it was found that both the δl pinning due to spatial fluctuations of the charge-carrier mean free path and the δTc pinning due to randomly distributed spatial variations in the transition temperature coexist at zero magnetic field in co-doped samples. Yet, the charge-carrier mean-free-path fluctuation pinning (δl) is the only important pinning mechanism at non-zero magnetic fields.

Keywords

, MgB2 superconductor, Critical current, Flux pinning, Single vortex-pinning
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@article{paperid:1068084,
author = {Kia Firoozkoohi, Narjess Sadat and Ghorbani, Shaban Reza and Arabi, Hadi and },
title = {Effect of magnetic field on the flux pinning mechanisms in Al and SiC co-doped MgB2 superconductor},
journal = {Solid State Communications},
year = {2018},
volume = {275},
number = {3},
month = {March},
issn = {0038-1098},
pages = {48--52},
numpages = {4},
keywords = {MgB2 superconductor; Critical current; Flux pinning; Single vortex-pinning},
}

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%0 Journal Article
%T Effect of magnetic field on the flux pinning mechanisms in Al and SiC co-doped MgB2 superconductor
%A Kia Firoozkoohi, Narjess Sadat
%A Ghorbani, Shaban Reza
%A Arabi, Hadi
%A
%J Solid State Communications
%@ 0038-1098
%D 2018

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