Critical temperature of the superconducting transition of individual phases of multiphase bismuth cuprates after cooling in a magnetic field to a temperature of 77 K

被引:4
|
作者
Chigvinadze, J. G. [1 ]
Ashimov, S. M. [1 ]
Acrivos, J. V. [2 ]
Gulamova, D. D. [3 ]
机构
[1] I Javakhishvili Tbilisi State Univ, E Andronikashvili Inst Phys, 6 Tamarashvili St, GE-0177 Tbilisi, Georgia
[2] San Jose State Univ, One Washington Sq, San Jose, CA 95192 USA
[3] Uzbek Acad Sci, Phys Sun Sci Prod Assoc, Inst Mat Sci, 2B G Mavlyanova St, Tashkent 700084, Uzbekistan
关键词
LATTICE;
D O I
10.1063/1.5093517
中图分类号
O59 [应用物理学];
学科分类号
摘要
Using a highly sensitive torsional vibration technique, the authors have determined the critical temperatures of the superconducting transition (T-c) of individual phases of multiphase cuprates [Bi1.7Pb0.3Sr2Ca(n-1)CunOy (n = 2-30)] in a constant external magnetic field (H) in the temperature range of 77 to 270 K. It has been found that oscillation damping peaks are more pronounced when a sample is rapidly cooled in an external magnetic field (FC) to a temperature of 77 K and then is slowly warmed to room temperature. An increase in the time of sample exposure to a magnetic field at 77 K leads to a rise in the temperature T-c of different phases, and to an increase in the intensity of a signal corresponding to high-temperature phases with T-c > 240 K. Structural studies have shown that with increasing sample exposure time at 77 K, as a result of sample compression an increase in stress concentration at grain boundaries appears to increase defect density and to enhance the pinning of Abrikosov vortices, i.e. creates new (additional) conditions for their "freezing" during the field cooling (FC) procedure. It has been established that in samples of the Bi1.7Pb0.3Sr2Ca(n-1)CunOy (n = 2-30) series, the critical temperature T-c increases from 107 K to = 240 K with an increase in n. Published under license by AIP Publishing.
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页码:386 / 394
页数:9
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