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Design and Measurement Of A Josephson Traveling Wave Parametric Amplifier Fabricated In A Superconducting Qubit Process

机译:超导量子位过程中制造的约瑟夫森行波参量放大器的设计与测量

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Josephson junction based parametric amplifiers are used to read out the state of superconducting qubits with high fidelity. These amplifiers are themselves superconducting circuits operating at temperatures of tens of millikelvin. A version of this type of amplifier which has exhibited large bandwidth and saturation power is the Josephson traveling wave parametric amplifier (JTWPA). One particular JTWPA topology consists of hundreds to thousands of Josephson junctions in a transmission line configuration along with periodic phase matching resonators to increase gain. Here, we look at using a superconducting qubit fabrication process to realize this circuit To analyze the sensitivity of the JTWPA to fabrication process variation, we discuss a linear model for the circuit which takes into account unit cell to unit cell variation. To extract the measured circuit values, we use in-situ measurements of a JTWPA to compare the designed values to the realized values. Finally we discuss preliminary results realizing an example JTWPA design using a fabrication process designed for superconducting qubits.
机译:基于约瑟夫逊结的参量放大器用于以高保真度读取超导量子位的状态。这些放大器本身就是超导电路,可在数十毫ikelvin的温度下工作。具有较大带宽和饱和功率的此类放大器的一个版本是约瑟夫森行波参量放大器(JTWPA)。一种特殊的JTWPA拓扑由传输线配置中的数百至数千个约瑟夫逊结以及周期性的相位匹配谐振器组成,以增加增益。在这里,我们着眼于使用超导量子位制造工艺来实现该电路。为了分析JTWPA对制造工艺变化的敏感性,我们讨论了一种电路的线性模型,其中考虑了单位晶胞到单位晶胞的变化。为了提取测量的电路值,我们使用JTWPA的现场测量结果将设计值与实现值进行比较。最后,我们讨论了使用为超导量子位设计的制造过程实现示例JTWPA设计的初步结果。

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