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Peak-effect, a new phenomenon observed at microwave frequencies in high Tc superconductor thin films

机译:峰值效应,一种在高Tc超导薄膜中的微波频率下观察到的新现象

摘要

Measurements of microwave surface resistance in magnetic fields (parallel to c-axis), ranging between 0.2 and 0.9 T, of high quality epitaxial DyBa2Cu3O7-y and YBa2Cu3O7-y superconducting thin films show a pronounced peak near the superconducting transition temperature. It is more pronounced at a frequency of 9.55 GHz as compared to 4.88 GHz. The exact nature of the peak is somewhat sample-dependent thereby indicating that the nature and distribution of defects in the films or the pinning sites determine the nature of the peaks; however, it follows the general trend that as the magnetic field is increased the peak shifts towards the lower temperature and is absent when the field is zero. The temperature and field dependence of the peak suggests that this peak could be associated with the order–disorder transition of the flux-line lattice. The peak-effect shows strong frequency dependence close to the depinning frequency of the flux line lattice. We explain our data in terms of the temperature dependence of the Labusch parameter within the collective pinning scenario in type II superconductors.
机译:高质量外延DyBa2Cu3O7-y和YBa2Cu3O7-y超导薄膜的磁场(平行于c轴)在0.2至0.9 T范围内的微波表面电阻测量结果显示,在超导转变温度附近有一个明显的峰。与4.88 GHz相比,它在9.55 GHz的频率上更为明显。峰的确切性质在某种程度上取决于样品,从而表明膜或钉扎位点中缺陷的性质和分布决定了峰的性质。然而,遵循这样的总体趋势:随着磁场的增加,峰值移向更低的温度,而当磁场为零时则不存在。峰的温度和场依赖性表明该峰可能与通量线晶格的有序-无序转变有关。峰值效应显示出很强的频率依赖性,接近磁通线晶格的固定频率。我们根据II型超导体的集体钉扎场景中Labusch参数的温度依赖性来解释我们的数据。

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