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APS -APS March Meeting 2017 - Event - Microfabrication of low-loss lumped-element Josephson circuits for non-reciprocal and parametric devices

机译:APS -APS 2017年3月会议-活动-用于非互易和参数设备的低损耗集总元件Josephson电路的微制造

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Recent developments in coupled mode theory have opened the doors to new nonreciprocal amplification techniques that can be directly leveraged to produce high quantum efficiency in current measurements in microwave quantum information. However, taking advantage of these techniques requires flexible multi-mode circuit designs comprised of low-loss materials that can be implemented using common fabrication techniques. In this talk we discuss the design and fabrication of a new class of multi-pole lumped-element superconducting parametric amplifiers based on Nb/Al-AlOx/Nb Josephson junctions on silicon or sapphire. To reduce intrinsic loss in these circuits we utilize PECVD amorphous silicon as a low-loss dielectric ($an delta sim 5 imes 10^{-4}$), resulting in nearly quantum-limited directional amplification.
机译:耦合模式理论的最新发展为新的不可逆放大技术打开了大门,该技术可以直接用于在微波量子信息的电流测量中产生高量子效率。然而,利用这些技术需要由低损耗材料组成的灵活的多模电路设计,该设计可以使用普通的制造技术来实现。在本次演讲中,我们将讨论基于硅或蓝宝石上Nb / Al-AlOx / Nb Josephson结的新型多极集总元件超导参量放大器的设计和制造。为了减少这些电路中的固有损耗,我们将PECVD非晶硅用作低损耗电介质(Δsim 5 imes 10 ^ {-4} $),从而产生了几乎量子受限的方向性放大。

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