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Implementation of SQUID array local oscillator into integrated circuit for 600 GHz superconducting receiver comprising log-periodic antenna and SIS mixer

机译:SQUID阵列本机振荡器在包含对数周期天线和SIS混频器的600 GHz超导接收机集成电路中的实现

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An integrated quasioptical receiver circuit comprising planar complementary log-periodic antenna, SIS mixer with microstrip matching transformers and parallel array of unshunted SIS junctions operating as a local oscillator has been designed, fabricated and dc tested. The array of parallel SIS junctions united in a microstrip transmission line can be described as a Josephson transmission line (JTL) with single flux quanta synchronously moving along the array of quantum interferometers. The JTL with 20 junctions 4 /spl mu/m in diameter has critical current 4.5 mA, normal resistance 0.3 /spl Omega/ and a self-detection step at about 1.1 mV. The step width is over 1.5 mA in current scale and 50 /spl mu/V in voltage scale that corresponds to 2.5 /spl mu/W oscillation power and 25 GHz tuning range with 550 GHz central frequency. A current applied along the top electrode of JTL allows to vary the output power of such oscillator. The advantages of such oscillator are higher impedance of microstrip line about 10 /spl Omega/ that makes easier matching to SIS mixer, lower losses at frequencies about the energy gap for Nb and the possibility to tune output power. The SIS junction IV curve shows self-resonant steps at about 1.2 mV that corresponds to the matching circuit central frequency about 600 GHz and is close to the JTL central frequency.
机译:已经设计,制造并进行了直流集成测试,包括平面互补对数周期天线,带微带匹配变压器的SIS混频器以及作为本地振荡器工作的未分流SIS结的并行阵列的集成准光接收器电路。结合在微带传输线中的并行SIS结的阵列可以描述为约瑟夫森传输线(JTL),其中单通量量子沿着量子干涉仪的阵列同步移动。具有20个结点(直径为4 / splμm/ m)的JTL具有4.5 mA的临界电流,0.3 / spl Omega /的正常电阻和约1.1 mV的自检测步长。电流范围的步幅超过1.5 mA,电压范围的步幅超过50 / spl mu / V,这对应于2.5 / spl mu / W的振荡功率和550 GHz中心频率的25 GHz调谐范围。沿着JTL顶部电极施加的电流可以改变这种振荡器的输出功率。这种振荡器的优点是微带线的阻抗较高,约为10 / spl Omega /,这使其更易于与SIS混频器匹配,在Nb的能隙附近的频率上具有较低的损耗,并且可以调谐输出功率。 SIS结IV曲线显示约1.2 mV处的自谐振阶跃,该阶跃对应于约600 GHz的匹配电路中心频率,并接近JTL中心频率。

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