Tunable superconducting resonators via on-chip control of local magnetic field

Chen-Guang Wang(王晨光), Wen-Cheng Yue(岳文诚),Xuecou Tu(涂学凑), Tianyuan Chi(迟天圆),Tingting Guo(郭婷婷), Yang-Yang Lyu(吕阳阳), Sining Dong(董思宁),Chunhai Cao(曹春海), Labao Zhang(张蜡宝),Xiaoqing Jia(贾小氢), Guozhu Sun(孙国柱),Lin Kang(康琳), Jian Chen(陈健),Yong-Lei Wang(王永磊), Huabing Wang(王华兵),and Peiheng Wu(吴培亨)

中国物理B(2024)

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摘要
Superconducting microwave resonators play a pivotal role in superconducting quantum circuits. The ability to fine-tune their resonant frequencies provides enhanced control and flexibility. Here, we introduce a frequency-tunable superconducting coplanar waveguide resonator. By applying electrical currents through specifically designed ground wires, we achieve the generation and control of a localized magnetic field on the central line of the resonator, enabling continuous tuning of its resonant frequency. We demonstrate a frequency tuning range of 54.85 MHz in a 6.21-GHz resonator. This integrated and tunable resonator holds great potential as a dynamically tunable filter and as a key component of communication buses and memory elements in superconducting quantum computing.
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关键词
superconducting resonator,NbN,kinetic inductance,tunable resonator
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