Inductance investigation of single layer and multilayer YBa2Cu3O7-δ thin films grown by reactive coevaporation

Han Cai, Hao Li, E. Cho, J. LeFebvre, Yan-Ting Wang, S. Cybart
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Abstract

The performance of Josephson based devices strongly depend on the inductance properties associated with the material and circuit design. Here we compare the inductance of $\mathbf{YBa}_{2}\mathbf{Cu}_{3}\mathbf{O}_{7-\delta}$ films with and without superconducting ground planes grown by reactive coevaporation. Specifically, we fabricated several superconducting quantum interference devices from single and multi-layer films with different geometries using a focused helium ion beam. Measurements of device electrical transport properties were analyzed to experimentally determine the sheet inductance. Additionally, measurements of the temperature dependence of the inductance was used to separate the contributions from geometric and kinetic inductance. We find that the presence of the ground plane in the multi-layer structure reduces the contribution of geometric inductance with no detectable change in the kinetic inductance.
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反应共蒸发生长单层和多层YBa2Cu3O7-δ薄膜的电感特性研究
约瑟夫森基器件的性能很大程度上取决于与材料和电路设计相关的电感特性。本文比较了$\mathbf{YBa}_{2}\mathbf{Cu}_{3}\mathbf{O}_{7-\delta}$薄膜的电感值。具体来说,我们利用聚焦氦离子束从不同几何形状的单层和多层薄膜中制备了几种超导量子干涉器件。分析了器件电输运特性的测量结果,通过实验确定了薄片电感。此外,测量温度依赖性的电感是用来分离的贡献从几何和动力学电感。我们发现,在多层结构中,地平面的存在降低了几何电感的贡献,而动态电感没有明显的变化。
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