首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >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
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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

机译:在磁场冷却至77k的温度下,多相铋的多相铋铜铜铜铜的各个阶段的超导转变的临界温度。

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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.
机译:使用高度敏感的扭转振动技术,作者已经确定了多相铜磷酸酯的单个阶段的超导转变(Tc)的临界温度[Bi1.7pb0.3sr2ca(n-1)碳合金(n = 2-30)]恒定的外部磁场(H)在77至270k的温度范围内。已经发现,当样品在外部磁场(Fc)中快速冷却至77k然后,当样品快速冷却至77k然后)时,振荡阻尼峰更加明显慢慢地温暖到室温。在77k处的样品暴露于磁场时的增加导致不同相的温度Tc的升高,并增加与具有Tc> 240k的高温相对应的信号的强度。结构研究表明,随着样品暴露时间在77 k下,由于样品压缩,晶界的应力浓度的增加似乎增加了缺陷密度,并增强了阿布索多涡流的固定,即为其创造新的(附加)条件在野外冷却(FC)过程中“冷冻”。已经确定,在BI1.7PB0.3SR2CA(N-1)CUNOY(N = 2-30)系列的样本中,临界温度T-C从107 k增加到= 240 k,随着n增加。通过AIP发布根据许可发布。

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