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Josephson vortex lattice melting in Bi-2212 probed by commensurate oscillations of Josephson flux-flow

机译:用约瑟夫森流量的相应振荡探测Bi-2212中的约瑟夫森涡晶格。

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摘要

We studied the commensurate semifluxon oscillations of Josephson flux-flow in Bi-2212 stacked structures near T-c as a probe of melting of a Josephson vortex lattice. We found that oscillations exist above 0.5 T. The amplitude of the oscillations is found to decrease gradually with the temperature and to turn to zero without any jump at T = T-0 (3.5 K below the resistive transition temperature T-c), thus, indicating a phase transition of the second order. This characteristic temperature T-0 is identified as the Berezinskii-Kosterlitz-Thouless (BKT) transition temperature, T-BKT, in the elementary superconducting layers of Bi-2212 at zero magnetic field. On the basis of these facts, we infer that melting of a triangular Josephson vortex lattice occurs via the BKT phase with formation of characteristic flux loops containing pancake vortices and antivortices. The B-T phase diagram of the BKT phase found from our experiment is consistent with theoretical predictions. (C) 2005 Pleiades Publishing, Inc.
机译:我们研究了T-c附近Bi-2212堆叠结构中约瑟夫森通量流的相应半流子振荡,以此作为约瑟夫森涡旋晶格熔化的探针。我们发现,振荡存在于0.5 T以上。随着温度的升高,振荡的幅度逐渐减小,并在T = T-0(低于电阻性转变温度Tc 3.5 K)时无任何跳跃地变为零。二阶的相变。在零磁场下,Bi-2212的基本超导层中的特征温度T-0被确定为Berezinskii-Kosterlitz-Thouless(BKT)转变温度T-BKT。基于这些事实,我们推断三角形约瑟夫森涡旋晶格的熔化是通过BKT相发生的,并形成了包含煎饼涡旋和反涡旋的特征通量环。从我们的实验中发现的BKT相的B-T相图与理论预测一致。 (C)2005年Pleiades Publishing,Inc.

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