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A double junction ring oscillator based on shunted, stackedjunctions

机译:基于并联堆叠结的双结环形振荡器

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We present the design of a double junction ring oscillator, along with initial rf measurements. The ring oscillator design includes the usage of two shunted, stacked junction devices (“Stacktrons”) as active switching nodes in the ring. The rf detection circuitry was designed to accommodate both a detector junction for measuring Shapiro steps and a finline antenna for broadband rf. As a motivation for our study, the double junction ring oscillator allows the probe of the multiple flux quantum (MFQ) state, which is a distinct, transient dynamical state resulting from the synchronous switching of nodal junctions in the circuit. Such a state has several possible applications. We quantify the existence of the MFQ state in the ring circuit configuration with numerical simulations, including circuit margins and yield. Finally, we provide a detailed explanation of the coupling circuitry between the ring oscillator and rf detection circuitry
机译:我们介绍了双结环形振荡器的设计以及初始射频测量。环形振荡器设计包括使用两个并联的堆叠结器件(“ Stacktrons”)作为环中的有源开关节点。射频检测电路旨在容纳用于测量Shapiro步骤的检测器结点和用于宽带射频的鳍线天线。作为我们研究的动力,双结环形振荡器允许探测多通量量子(MFQ)状态,该状态是电路中节点结的同步切换产生的独特的瞬态动态状态。这种状态有几种可能的应用。我们使用数值模拟(包括电路裕量和良率)来量化环形电路配置中MFQ状态的存在。最后,我们提供环形振荡器和RF检测电路之间的耦合电路的详细说明

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