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Measurements of low magnetic field microwave absorption in 110-K superconducting Bi-Sr-Ca-Cu-O thin films

机译:110-K超导Bi-Sr-Ca-Cu-O薄膜中低磁场微波吸收的测量

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Studies on magnetic-field dependent microwave absorption in Bi(Pb)-Sr-Ca-Cu-O thin films superconducting above 100 K are reported. The films were DC magnetron sputtered on MgO and CaNdAlO/sub 4/ single crystals from Pb-rich targets and post-annealed at high temperatures in air for less than 1 h. The measurements were performed as a function of temperature, DC magnetic field, and the film magnetic history. The results show that the microwave absorption measurements are a very sensitive tool for high-T/sub c/ thin-film characterization, since even small variations in the film phase homogeneity, granularity, or crystalline orientation are clearly visible on the modulated absorption curves. It was found that the films characterized by the lowest absorption exhibited the highest critical current densities.
机译:报道了在100 K以上超导的Bi(Pb)-Sr-Ca-Cu-O薄膜中与磁场有关的微波吸收的研究。将膜用DC磁控管溅射在富含Pb靶材的MgO和CaNdAlO / sub 4 /单晶上,并在高温下于空气中退火少于1小时。根据温度,直流磁场和薄膜磁历史来进行测量。结果表明,微波吸收测量是用于高T / sub c /薄膜表征的非常灵敏的工具,因为在调制的吸收曲线上,即使膜相均匀性,粒度或晶体取向的很小变化也可以清楚地看到。发现以最低吸收为特征的膜表现出最高的临界电流密度。

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