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Superconducting RF Metamaterials Made With Magnetically Active Planar Spirals

机译:磁性主动平面螺旋制成的超导RF超材料

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Superconducting metamaterials combine the advantages of low-loss, large inductance (with the addition of kinetic inductance), and extreme tunability compared to their normal metal counterparts. Therefore, they allow realization of compact designs operating at low frequencies. We have recently developed radio frequency (RF) metamaterials with a high loaded quality factor and an electrical size as small as $simlambda /658$ ($lambda$ is the free space wavelength) by using Nb thin films. The RF metamaterial is composed of truly planar spirals patterned with lithographic techniques. Linear transmission characteristics of these metamaterials show robust Lorentzian resonant peaks in the sub-100 MHz frequency range below the $T_{c}$ of Nb. Though Nb is a non-magnetic material, the circulating currents in the spirals generated by RF signals produce a strong magnetic response, which can be tuned sensitively either by temperature or magnetic field thanks to the superconducting nature of the design. We have also observed strong nonlinearity and meta-stable jumps in the transmission data with increasing RF input power until the Nb is driven into the normal state. We discuss the factors modifying the induced magnetic response from single and 1-D arrays of spirals in the light of numerical simulations.
机译:与普通金属材料相比,超导超材料具有低损耗,大电感(加上动电感)和极好的可调性的优点。因此,它们允许实现在低频下工作的紧凑设计。我们最近通过使用Nb薄膜开发了具有高负载品质因数和电气尺寸小至simlambda / 658 $($ lambda $是自由空间波长)的射频(RF)超材料。 RF超材料由采用光刻技术构图的真正的平面螺旋线组成。这些超材料的线性传输特性在低于Nb的T_ {c} $的100 MHz以下频率范围内显示出鲁棒的共振峰。尽管Nb是非磁性材料,但是RF信号产生的螺旋中的循环电流会产生强大的磁响应,由于设计的超导特性,可以通过温度或磁场敏感地对其进行调谐。我们还观察到,随着Nb被驱动到正常状态,随着RF输入功率的增加,传输数据中会出现强烈的非线性和亚稳态跃变。根据数值模拟,我们讨论了修改螺旋的一维和一维阵列的感应磁响应的因素。

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