Flux-coupled tunable superconducting resonator

动电感 谐振器 电感 电感器 材料科学 光电子学 放大器 物理 磁通量 核磁共振 电压 磁场 CMOS芯片 量子力学
作者
J. Li,P. S. Barry,Tom Cecil,M. Lisovenko,V. Yefremenko,Gensheng Wang,Serhii Kruhlov,G. Karapetrov,C. L. Chang
出处
期刊:Physical review applied [American Physical Society]
卷期号:22 (1) 被引量:3
标识
DOI:10.1103/physrevapplied.22.014080
摘要

We present a design and implementation of a frequency-tunable superconducting resonator. The resonance frequency tunability is achieved by flux-coupling a superconducting LC loop to a current-biased feedline; the resulting screening current leads to a change of the kinetic inductance and shift in the resonance frequency. The thin-film aluminum resonator consists of an interdigitated capacitor and thin line inductors forming a closed superconducting loop. The magnetic flux from the nearby niobium current feedline induces Meissner shielding currents in the resonator loop leading to a change in the kinetic part of the total inductance of the resonator. We demonstrate continuous frequency tuning within 160 MHz around the resonant frequency of 2.7 GHz. We show that: (1) frequency up-conversion is achieved when a kilohertz ac modulation signal is superimposed onto the dc bias resulting in sidebands to the resonator tone; (2) three-wave mixing is attained by parametrically pumping the nonlinear kinetic inductance using a strong rf pump signal in the feedline. The simple architecture is amenable to large-array multiplexing and on-chip integration with other circuit components. The concept could be applied in flux magnetometers, up-converters, and parametric amplifiers operating above 4 K when alternative high-critical-temperature material with high kinetic inductance is used.
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