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Traveling-Wave Parametric Amplifier Based on Three-Wave Mixing in a Josephson Metamaterial

机译:Josephson超材料中基于三波混频的行波参数放大器

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We develop a novel concept of a Josephson traveling-wave parametric amplifier with three-wave mixing. The proposed amplifier consists of a microwave transmission line formed by a serial array of nonhysteretic one-junction SQUIDs. These SQUIDs are flux-biased such that the phase drops across the Josephson junctions are equal to 90°. This one-dimensional metamaterial possesses large quadratic nonlinearity and minimal cubic (Kerr-like) nonlinearity. This property allows phase matching and exponential power gain in a wide frequency range. The proof-of-principle measurements performed at temperature T = 4.2 K on Nb trilayer samples have demonstrated the validity of our concept of a practical Josephson parametric amplifier with great promise for quantum-limited performance.
机译:我们开发了具有三波混频的约瑟夫森行波参量放大器的新颖概念。拟议的放大器由微波传输线组成,该传输线由无迟滞单结SQUID的串行阵列形成。这些SQUID经过通量偏置,从而使约瑟夫森结上的相降等于90°。这种一维超材料具有较大的二次非线性和最小的立方(类Keer)非线性。此属性允许在较宽的频率范围内进行相位匹配和指数功率增益。在Nb三层样品上于T = 4.2 K的温度下进行的原理验证测量证明了我们实用的约瑟夫森参数放大器概念的有效性,并有望实现量子受限的性能。

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