DocumentCode :
842301
Title :
Critical field of magnesium diboride in substituted and irradiated samples
Author :
Tarantini, C. ; Braccini, V. ; Ferdeghini, C. ; Gatti, F. ; Manfrinetti, P. ; Marrè, D. ; Palenzona, A. ; Pallecchi, I. ; Bernini, C. ; Tumino, A. ; Sheikin, I. ; Aebersold, H.U. ; Lehmann, E. ; Putti, M.
Author_Institution :
INFM, Genova, Italy
Volume :
15
Issue :
2
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
3223
Lastpage :
3226
Abstract :
We studied the upper critical field in poly-crystalline MgB2 samples in which disorder was introduced by different ways: Al substitution and neutron irradiation. We observed that by Al doping critical temperature Tc decreases, the resistivity increases but the upper critical field, Hc2, decreases. This behavior can be explained considering that Al substitutions affect only π bands leaving σ bands in clean regime; the decrease of Hc2 can be correlated with suppression of the larger gap in doped samples. On the other hand neutron irradiation produces an increase of Hc2. Neutron irradiation was carried on up to fluences of 1.4·1020 n/cm2. To obtain a disorder structure homogeneously distributed, the experiment was carried out on bulk samples prepared with the 11B isotope. Up to fluences of 1018 n/cm2 the critical temperature is slightly diminished (36 K) and the superconducting properties are improved; the upper critical field is significantly increased: from 13.5 T to 20.3 T at 12 K. For larger neutron fluences the critical temperature is suppressed down to 9.2 K and the superconducting properties come out strongly degraded.
Keywords :
aluminium; doping; magnesium compounds; neutron effects; superconducting critical field; superconducting transition temperature; type II superconductors; 12 K; 13.5 to 20.3 T; Al substitution; MgB2:Al; critical field; critical fields; critical temperature; disorder structure; irradiated samples; magnesium diboride; neutron irradiation; substituted samples; superconducting properties; Anisotropic magnetoresistance; Conductivity; Crystals; Doping; Electrons; Large-scale systems; Magnesium compounds; Magnetic field measurement; Neutrons; Temperature; Critical fields; high magnetic fields; magnesium compounds; neutron radiation effects;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2005.848802
Filename :
1440357
Link To Document :
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