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Tunable superconducting nanoinductors

机译:可调谐超导纳米电感器

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摘要

We characterize inductors fabricated from ultra-thin, approximately 100 nm wide strips of niobium (Nb) and niobium nitride (NbN). These nanowires have a large kinetic inductance in the superconducting state. The kinetic inductance scales linearly with the nanowire length, with a typical value of 1 nH μm~(-1) for NbN and 44 pH μm~(-1) for Nb at a temperature of 2.5 K. We measure the temperature and current dependence of the kinetic inductance and compare our results to theoretical predictions. We also simulate the self-resonant frequencies of these nanowires in a compact meander geometry. These nanowire inductive elements have applications in a variety of microwave frequency superconducting circuits.
机译:我们表征了由超薄,约100 nm宽的铌(Nb)和氮化铌(NbN)条制成的电感器。这些纳米线在超导状态下具有大的动感。在2.5 K的温度下,动电感与纳米线的长度成线性比例,NbN的典型值为1 nHμm〜(-1),Nb的典型值为44 pHμm〜(-1)。我们测量温度和电流依赖性的动电感,并将我们的结果与理论预测进行比较。我们还以紧凑的曲折几何形状模拟了这些纳米线的自谐振频率。这些纳米线电感元件可用于各种微波频率超导电路中。

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