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Design and experimental study of superconducting left-handed transmission lines with tunable dispersion

机译:可调色散超导左手传输线的设计与实验研究

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摘要

We study the microwave properties of a superconducting tunable coplanar waveguide (CPW). Pairs of Josephson junctions are forming superconducting quantum interference devices (SQUIDs), which shunt the central conductor of the CPW. The Josephson inductance of the SQUIDs is varied in the range of 0.08-0.5 nH by applying a dc magnetic field. The central conductor of the CPW contains Josephson junctions connected in series that provide extra inductances; the magnetic field controlling the SQUIDs is weak enough not to influence the inductance of the chain of the single junctions. The circuit is designed to have left- and right-handed transmission properties separated by a variable rejection band; the band edges can be tuned by the magnetic field. We present transmission measurements on CPWs based on up to 120 Nb-AlO_x-Nb Josephson junctions. At zero magnetic field, we observed no rejection band in the frequency range of 8-11 GHz. When applying the magnetic field, a rejection band between 7 GHz and 9 GHz appears. The experimental data are compared with numerical simulations.
机译:我们研究了超导可调谐共面波导(CPW)的微波特性。成对的约瑟夫森结正在形成超导量子干涉装置(SQUID),该装置将CPW的中心导体分流。通过施加直流磁场,SQUID的约瑟夫森电感在0.08-0.5 nH的范围内变化。 CPW的中心导体包含串联的约瑟夫逊结,可提供额外的电感。控制SQUID的磁场足够弱,不会影响单结链的电感。该电路设计为具有左手和右手传输特性,并由可变抑制带隔开;带边缘可以通过磁场来调谐。我们提出基于多达120 Nb-AlO_x-Nb Josephson结的CPW的传输测量。在零磁场下,我们在8-11 GHz的频率范围内未观察到抑制带。施加磁场时,会出现7 GHz至9 GHz之间的抑制带。将实验数据与数值模拟进行比较。

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