论文标题

纳米级楔形超导薄膜中的磁通量穿透

Magnetic flux penetration in nanoscale wedge-shaped superconducting thin films

论文作者

Pinheiro, L. B. L. G., Jiang, L., Abbey, E. A., Chaves, Davi A. D., Chiquito, A. J., Johansen, T. H., Van de Vondel, J., Xue, C., Zhou, Y. -H., Silhanek, A. V., Ortiz, W. A., Motta, M.

论文摘要

厚度均匀性被认为是设计薄膜设备的重要参数。但是,最近出现了一些基于厚度不均匀的膜的应用,例如气体传感器和基于膜组成的逐渐变化的优化材料。这项工作涉及超导PB薄膜,并借助弥漫性模具口罩制备了厚度梯度。原子力显微镜和能量分散性X射线光谱显示出范围从90〜nm到154〜nm的变化。定量磁光图像在磁通量的突然和平滑穿透方案以及厚度依赖性的临界电流密度($ j_c $)中都揭示了有趣的特征。此外,我们观察到逐渐的超导过渡,因为某些厚度逐渐达到了临界场。此外,在增加和减少磁场时,观察到触发通量雪崩的滞后也由沿厚度梯度的$ j_c $配置文件进化来解释。基于热磁模型的数值模拟与实验数据公平吻合。这些发现表明,楔形膜是一种可行的方法,可以连续地研究超导材料的厚度依赖性特性。

Thickness uniformity is regarded as an important parameter in designing thin film devices. However, some applications based on films with non-uniform thickness have recently emerged, such as gas sensors and optimized materials based on the gradual change of film composition. This work deals with superconducting Pb thin films with a thickness gradient prepared with the aid of a diffuse stencil mask. Atomic Force Microscopy and Energy-Dispersive X-ray Spectroscopy show variations ranging from 90~nm to 154~nm. Quantitative magneto-optical images reveal interesting features during both the abrupt and the smooth penetration regimes of magnetic flux, as well as the thickness-dependent critical current density ($J_c$). In addition, we observe a gradual superconducting transition as the upper critical field is progressively reached for certain thicknesses. Furthermore, the hysteresis observed for triggering flux avalanches when increasing and decreasing magnetic fields is also accounted for by the $J_c$ profile evolution along the thickness gradient. Numerical simulations based on the Thermomagnetic Model are in fair agreement with the experimental data. These findings demonstrate that wedge-shaped films are a viable approach to investigate, in a continuous fashion, thickness-dependent properties of a superconducting materials.

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