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Oxygen content and inhomogeneity effects on the electrical properties of YBa2Cu3Oy thin films

机译:氧含量和不均匀性对YBa2Cu3Oy薄膜电性能的影响

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摘要

Oxygen content is a very important factor influencing the electrical properties of YBa2Cu3Oy. In this work the electrical properties of laser deposited YBa2Cu3Oy thin films on LaAlO3(100), in the whole range 6 y 7, are studied. An electrical network model, which randomly assigns oxygen contents and R(T) characteristics to the different elements in the circuit according to an arbitrary distribution, is used to analyze several features in the measured R(T) characteristics as a function of oxygen homogeneity. The model takes into account both short-range and long-range oxygen inhomogeneities. Good agreement between estimated oxygen contents from x-ray diffraction data in our samples and the average oxygen contents used to reproduce their R(T) characteristics is found. The model points out that oxygen homogeneity is very important in order to get the best and reproducible properties, and for conduction and superconductivity analysis through the shape or derivatives of R(T) characteristics.
机译:氧含量是影响YBa2Cu3Oy电性能的非常重要的因素。在这项工作中,研究了在LaAlO3(100)上整个6 y 7范围内激光沉积YBa2Cu3Oy薄膜的电性能。使用网络模型,根据任意分布将氧气含量和R(T)特性随机分配给电路中的不同元素,该模型用于分析测得的R(T)特性中的几个特性,作为氧气均匀性的函数。该模型同时考虑了近距离和远距离氧的不均匀性。从我们的样品的X射线衍射数据估计的氧含量与用于再现其R(T)特性的平均氧含量之间发现了很好的一致性。该模型指出,氧的均质性对于获得最佳和可重现的特性,以及通过R(T)特性的形状或导数进行传导和超导性分析非常重要。

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