论文标题
近端耦合niobium niobium niobium nano-Island阵列的局部成像在金薄膜上
Local imaging of diamagnetism in proximity coupled niobium nano-island arrays on gold thin films
论文作者
论文摘要
在这项工作中,我们研究了工程障碍对接近性超导岛阵列的局部磁反应的影响,通过比较扫描超导量子量子干扰装置(Squid)易感性测量与我们将系统视为一个维度(1D)超级符号符号的网络(SNSSSSSSSSSSSSSSSSSSSSSSSSS)JOSSON JOSSONS JOSSONS JOSSINS JOSSONS JOSSONS JOSSONS JOSSINS JOSSINS JOSIDER(SNSSSSSSSSSSSSSS)耦合能量$ e_j $由岛之间的连接长度或距离确定。我们发现,无序阵列在空间上表现出不均匀的磁管反应,对于低局部应用磁场,该连接网络模型很好地描述了这些磁场,我们讨论了这些结果,因为它们与不均匀的二维(2D)超导体有关。我们的阵列静态磁反应模型并未完全捕获非线性和耗散的发作,而随着施加的场的增加,由于这些效果与漩涡运动有关,这是由于扫描squid squid useppertry测量的动态性质而导致的。这项工作展示了具有工程障碍的2D模型超导系统,并突出了耗散对2D超导体和约瑟夫森连接阵列的局部磁性特性的影响。
In this work we study the effect of engineered disorder on the local magnetic response of proximity coupled superconducting island arrays by comparing scanning Superconducting Quantum Interference Device (SQUID) susceptibility measurements to a model in which we treat the system as a network of one-dimensional (1D) superconductor-normal metal-superconductor (SNS) Josephson junctions, each with a Josephson coupling energy $E_J$ determined by the junction length or distance between islands. We find that the disordered arrays exhibit a spatially inhomogeneous diamagnetic response which, for low local applied magnetic fields, is well described by this junction network model, and we discuss these results as they relate to inhomogeneous two-dimensional (2D) superconductors. Our model of the static magnetic response of the arrays does not fully capture the onset of nonlinearity and dissipation with increasing applied field, as these effects are associated with vortex motion due to the dynamic nature of the scanning SQUID susceptometry measurement. This work demonstrates a model 2D superconducting system with engineered disorder and highlights the impact of dissipation on the local magnetic properties of 2D superconductors and Josephson junction arrays.