约瑟夫森效应
鱿鱼
微波食品加热
快速单通量量子
超导量子计算
光电子学
超导电性
材料科学
扫描SQUID显微镜
磁通量子比特
磁通量量子
量子计算机
物理
凝聚态物理
磁场
量子
磁强计
量子力学
生态学
梯度计
生物
作者
Kevin Uhl,Daniel Hackenbeck,Christoph Füger,R. Kleiner,D. Koelle,Daniel Bothner
摘要
Josephson microwave circuits are essential for the currently flourishing research on superconducting technologies, such as quantum computation, quantum sensing, and microwave signal processing. To increase the possible parameter space for device operation with respect to the current standards, many materials for superconducting circuits are under active investigation. Here, we present the realization of a frequency-tunable, weakly nonlinear Josephson microwave circuit made of the high-temperature cuprate superconductor YBa2Cu3O7 (YBCO), a material with a high critical temperature and a very high critical magnetic field. An in situ frequency-tunability of ∼300 MHz is achieved by integrating a superconducting quantum interference device (SQUID) into the circuit based on Josephson junctions directly written with a helium ion microscope (HIM). Our results demonstrate that YBCO-HIM-SQUID microwave resonators are promising candidates for quantum sensing and microwave technology applications.
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