The Microstructure and Superconducting Properties of Bi,Pb-2223 Thin Film Fabricated by RF Sputtering and Annealing Method

We investigated the microstructures and superconducting properties of Bi,Pb-2223 thin films on SrTiO 3 (100) fabricated by radio-frequency (RF) sputtering and annealing. Most as-deposited films fabricated by RF sputtering did not exhibit a superconducting transition due to their low crystallinity, t...

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Veröffentlicht in:IEEE transactions on applied superconductivity 2013-06, Vol.23 (3), p.7500504-7500504
Hauptverfasser: Matsumoto, A., Kitaguchi, H., Doi, T., Kajihara, T., Hata, S.
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Sprache:eng
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Zusammenfassung:We investigated the microstructures and superconducting properties of Bi,Pb-2223 thin films on SrTiO 3 (100) fabricated by radio-frequency (RF) sputtering and annealing. Most as-deposited films fabricated by RF sputtering did not exhibit a superconducting transition due to their low crystallinity, their deviation from the composition of Bi-2223, and their low intergrain connectivity. The as-deposited films did not contain Pb. To obtain the Bi,Pb-2223 phase, we annealed the film with Bi,Pb-2223 pellets and powder. After annealing, we confirmed that the thin film contained Pb. T c zero = 100 K was obtained in Bi,Pb-2223 thin film after post-annealing. We observed strong 00 l peaks and a sharp quadrupole in X-ray θ - 2θ and φ-scan measurements. These results suggest that this film consists of a single phase of Bi,Pb-2223 and has a biaxial orientation. The Bi,Pb-2223 thin film had a maximum J c of 0.1 × 10 5 A/cm 2 at 78 K in a magnetic field of 2 T. Furthermore, Bi,Pb-2223 exhibited very strong anisotropy in its J c - B angle characteristics.
ISSN:1051-8223
1558-2515
DOI:10.1109/TASC.2012.2233856