利用接近效应控制铱薄膜的Tc

R. Hennings-Yeomans, C. L. Chang, J. Ding, A. Drobizhev, B. Fujikawa, S. Han, G. Karapetrov, Y. Kolomensky, V. Novosad, T. O’Donnell, J. Ouellet, J. Pearson, T. Polakovic, D. Reggio, B. Schmidt, B. Sheff, V. Singh, R. Smith, G. Wang, B. Welliver, V. Yefremenko, J. Zhang
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引用次数: 10

摘要

具有低T_c的超导过渡边缘传感器(TES)在高分辨率量热检测中是必不可少的。为了开发用于低温中微子双β衰变搜索的灵敏量热计,我们一直在研究将Ir薄膜的T_c$降低到20 mK的方法。利用超导体和普通金属之间的接近效应,我们发现了两种室温制备Ir基低T_c$薄膜的方法。在第一种方法中,Ir薄膜夹在两个Au薄膜之间,即Au/Ir/Au三层,根据相对厚度的不同,其T_c$在20-100 mK范围内可调。在第二种方法中,使用顺磁性Pt薄膜来创建具有可调谐T_c$在同一范围内的Ir/Pt双分子层。我们详细研究了基于ir的低T_c薄膜的制备和表征,并将实验结果与理论模型进行了比较。我们表明,具有可预测和可重复的临界温度的ir基薄膜可以一致地制造用于大规模探测器应用。
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Controlling Tc of iridium films using the proximity effect
A superconducting Transition-Edge Sensor (TES) with low-$T_c$ is essential in a high resolution calorimetric detection. With a motivation of developing sensitive calorimeters for applications in cryogenic neutrinoless double beta decay searches, we have been investigating methods to reduce the $T_c$ of an Ir film down to 20 mK. Utilizing the proximity effect between a superconductor and a normal metal, we found two room temperature fabrication recipes of making Ir-based low-$T_c$ films. In the first approach, an Ir film sandwiched between two Au films, a Au/Ir/Au trilayer, has a tunable $T_c$ in the range of 20-100 mK depending on the relative thicknesses. In the second approach, a paramagnetic Pt thin film is used to create Ir/Pt bilayer with a tunable $T_c$ in the same range. We present detailed study of fabrication and characterization of Ir-based low-$T_c$ films, and compare the experimental results to theoretical models. We show that Ir-based films with predictable and reproducible critical temperature can be consistently fabricated for use in large scale detector applications.
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