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Temperature and field dependence of critical currents, resistances and irreversibility fields of a (Tl0.6Pb0.24Bi0.16)(Ba0.1Sr0.9)2Ca2Cu3Oy film on single-crystalline lanthanum aluminate

✍ Scribed by W.M. Woch; R. Zalecki; A. Kołodziejczyk; O. Heiml; G. Gritzner


Publisher
Elsevier Science
Year
2006
Tongue
English
Weight
485 KB
Volume
434
Category
Article
ISSN
0921-4534

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✦ Synopsis


The temperature and magnetic field dependences of the ac resistance and the critical currents of a c-axis oriented, ab aligned (Tl 0.6 Pb 0.24 Bi 0.16 )(Ba 0.1 Sr 0.9 ) 2 Ca 2 Cu 3 O y film on (1 0 0) single-crystalline lanthanum aluminate substrate were measured and analysed. The magnetic field and the temperature dependences of the width of the resistive transition to the superconducting state and of the irreversibility fields were analysed both within the flux-creep model and the superconducting liquid vortex state model. The temperature width of the resistive transition was explained on the basis of the superconducting Josephson weak links model of resistance and the barrier of vortex motion. The irreversibility field was described by an exponential formula. The temperature dependence of the critical current was described by a power law; the magnetic field dependence of the critical current was fitted to a Kim-type power law as well as to an exponential relation from the percolation model.